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Infections — Disease Index & Clinical Criteria

Deck-derived finals-triage sheet · 76 disease entries + 17 criteria across 13 lectures · ICC-3

C/P — Clinical Presentation
Inves — Investigations
Mng — Management
Special — Pathognomonic / disease-unique

Immunisation & Vaccines

6 entries
1

Vaccine Classification & Principles

Definitions
  • Immunisation — umbrella term = manipulating the immune response to fight infection (covers vaccines + immunoglobulins)
  • Vaccination — administering vaccines only
  • Active immunity — natural infection or vaccines · Passive immunity — natural maternal antibody or immunoglobulin (normal/specific)
Classification
  • Live — natural (vaccinia/smallpox) or attenuated
  • Killed / inactivated — whole · subcellular/subunit (acellular) · subunit + conjugate · toxoid
Goals — Herd Immunity
  • Primary aim — prevent infection in the individual
  • Secondary aim — break transmission + protect unvaccinated members of the population
Key Points
  • Herd immunity indirectly protects those who cannot be vaccinated (immunocompromised, allergic)
  • Polysaccharide must be conjugated to protein for children <2 y — they do not respond to polysaccharide alone
2

Live Attenuated Vaccines

Nature
  • Diminished virulence but retained antigens
  • Natural live example — vaccinia (smallpox)
Examples
  • BCG · MMR · OPV (Sabin) = the live polio vaccine · Varicella · Yellow fever
Advantages
  • Fewer doses required
  • Long-lasting local + systemic immunity
Cautions
  • May revert to wild-type (e.g. polio); less stable
  • Contraindicated in immunosuppression + pregnancy (can cause natural illness)
3

Killed / Inactivated Vaccines

Nature
  • No reversion to wild type · safe in immunocompromised · stable
  • Disadvantages — more expensive, multiple doses + boosters, uncertain protection length, common local reactions, may be poorly immunogenic
Subtypes & Examples
  • Whole — IPV (Salk), Rabies, Hepatitis A
  • Subunit — Hep B (recombinant), Influenza, 23-valent pneumococcal polysaccharide, B. pertussis
  • Conjugate (polysaccharide + immunogenic protein) — 7-valent pneumococcal, Hib, MenC
  • Toxoid (inactivated toxin — formaldehyde or genetic mutation) — tetanus
Conjugate Rationale
  • Conjugation makes polysaccharide immunogenic in children <2 y (who do not respond to plain polysaccharide)
Key Points
  • Local reactions more common than live (killed > live)
  • IPV Salk = killed polio; OPV Sabin = live polio (contrast pair)
4

Passive Immunisation & Immunoglobulins

Nature
  • Short-term protection only, but immediate
  • Can be used alone or with an active vaccine
Types of Ig
  • Normal immunoglobulin — Measles, Hepatitis A
  • Specific immunoglobulin — Hepatitis B, Varicella-zoster, Tetanus, Rabies
Combined Active + Passive
  • Post-exposure prophylaxis — Hep B Ig + Hep B vaccine for newborns of HBV+ mothers and after HBV+ needlestick injury
Key Points
  • VZIG for seronegative pregnant women / neonates / immunocompromised exposed to varicella (chickenpox) or zoster (shingles)
5

Vaccine Adverse Effects & Contraindications

Side Effects
  • Fever · local reactions · convulsions · disease-like reactions (rash / meningitis / encephalitis) · blood clotting disorders · anaphylaxis (rare)
  • Local reactions more common with killed > live
Contraindications (relative)
  • Not absolute — precautions needing clinical judgment: live vaccine + immunocompromised; live vaccine + pregnancy; antibiotic / egg allergy (review each vaccine); previous vaccine reaction; FHx adverse reaction; undiagnosed/unstable neurological conditions
Reference
  • Check the "Green Book" (free online) for other contraindications
Myth-Busting
  • Multiple vaccines do not overload an infant's immune system
  • No causal MMR–autism link (Kaye et al, BMJ 2001 — divergent trends, no correlation)
physiology · background · low-yield
Background
  • Rebuttal to immune-overload fear — everyday mishaps (scraped knees, sore throats) place a greater demand on the immune system than the inert antigens in vaccines
  • Routine vaccination timing is deliberate — vaccines are timed to protect babies when they need it most
6

Special-Case & Individual Vaccines

BCG
  • Live attenuated; negative skin test first (unless <3 months)
  • Targets — contacts of active respiratory TB, people from high-TB areas, health-service staff
Influenza / Hepatitis B
  • Influenza — every autumn/winter; DM, immunosuppression, chronic resp/cardiac/renal/liver disease, >65 y, HCW & carers
  • Hepatitis B — IVDU, close family of a case, infants of HBV+ mothers, haemophilia/renal failure, travel, HCW; ~3 doses + booster at 5 y
Varicella / Pneumococcal
  • Varicella — live-attenuated (Japan 1974), universal in US, immunity ≥20 y; seronegative HCW + close contacts of immunocompromised
  • 23-valent pneumococcal polysaccharide — no response <2 y; asplenia, diabetics, chronic CVS/resp/renal disease, >65 y
Asplenia / Hyposplenism
  • Lifelong risk from encapsulated organisms — S. pneumoniae, H. influenzae, N. meningitidis
  • Give meningococcal + Hib + pneumococcal vaccines; revaccination may be needed
physiology · background · low-yield
Background
  • Varicella vaccine — potential unknown long-term concern: ? more shingles (herpes zoster)
Epidemiology/Risk
  • Varicella vaccine adverse reactions in 4–7% — mild only (fever, rash, local reaction)

Fever

1 entry
7

Fever of Unknown Origin (FUO)

Definition
  • Fever — exceeds normal daily variation + raised hypothalamic set point (>37.2 °C before noon, >37.7 °C after noon)
  • Classic FUO — >38.3 °C (101 °F) on several occasions, >3 weeks' duration, no diagnosis despite 1 week inpatient investigation OR 3 outpatient visits
  • 4 categories — Classic · Nosocomial (hospital-acquired) · Neutropenic/immunocompromised · HIV-related (cutoffs → Criteria tab)
Inves — stepwise, least-invasive first
  • Step 1 — comprehensive history + examination hunting for PDCs (potential diagnosis clues); begin least invasive to avoid harm/cost
  • Minimum workup — FBC, CMP/electrolytes, ESR, CRP, ferritin, LFTs, TSH, LDH, CK, urinalysis + urine culture, blood cultures ×3, ANA, RF, HIV-1/2 serology, hepatitis A/B/E, EBV, CMV, TB skin test or IGRA
  • Imaging — CXR/CT chest, CT abdo/pelvis, abdo-pelvic USS, lower-limb venous duplex, echocardiography (TTE/TEE)
  • Second-tier — MRI, 18FDG-PET/CT, targeted biopsy (lymph node, liver, temporal artery, bone marrow)
  • Additional second-tier labs — cryoglobulins, ANCA, complement studies, peripheral blood smear, serum protein electrophoresis (SPEP)
Mng
  • Treat the identified cause; proceed stepwise (avoid premature invasive workup)
  • Empiric NSAIDs or immunosuppressants (corticosteroids) only after discussing risks/benefits with the patient
Special
  • Commonest cause category in the developed world = noninfectious inflammatory disorders (not infection or malignancy)
  • Causes — infection (IE, osteomyelitis, occult abscess, TB, brucellosis), neoplasm (lymphoma, leukaemia), autoimmune (SLE, RA, GCA, sarcoid, PAN), other (drug fever, factitious, recurrent PE)
  • Infectious causes also span viral (HIV, EBV, CMV, viral hepatitis, enterovirus) and fungal / protozoal (e.g. malaria) / other parasitic infections
physiology · background · low-yield
Microbiology
  • Bacterial causes — organ-specific also include sinusitis, cholangitis, UTI, meningitis; non-organ-specific include Q-fever, Salmonella, Yersinia, tularaemia, septic phlebitis, rheumatic fever, Lyme disease, Whipple's disease
Other
  • Neoplastic causes also include solid tumours; 'other' causes also include trauma, non-infectious hepatitis
Background
  • PUO (pyrexia of unknown origin) — alternative abbreviation for FUO
  • Fever in FUO does not have to be persistent
Epidemiology/Risk
  • Most persistent fevers are diagnosed within one week of hospital evaluation
  • Infectious causes evolving globally due to increased global travel and use of immunomodulating drugs

Gram-Positive Bacterial Infections

12 entries
8

Staphylococcus aureus

C/P
  • Gram-positive cocci in clusters; skin + nasal commensal (~80% adults)
  • Pyogenic — folliculitis, carbuncles, abscesses, pneumonia
  • Bloodstream — osteomyelitis, endocarditis, meningitis
  • Toxin-mediated — food poisoning, toxic shock syndrome, scalded skin syndrome
  • Device-related — IV line, pacemaker
Inves
  • Coagulase-positive — divides the genus; highly virulent
  • Samples — pus, tissue, blood, vomitus; Gram stain = GPC in clusters
  • Blood agar 18–24 h; catalase +, coagulase +, DNase +; PCR
Mng
  • MSSA — flucloxacillin / nafcillin / cefazolin (cephalexin or dicloxacillin for simple skin); clindamycin alternate
  • MRSA — vancomycin (severe/complex); clindamycin, co-trimoxazole, linezolid, or daptomycin
  • Duration by syndrome — skin 5–7 d · complex SSTI 2–4 wk · bacteraemia 2–4 wk · osteomyelitis 4–6 wk · pneumonia 10–14 d
  • Decolonisation / prevention — topical nasal mupirocin reduces nasal colonisation (not reliably successful at preventing surgical infection; unclear MRSA benefit); contact precautions (private room, gloves, gown, handwashing)
  • Daptomycin is inactivated by lung surfactant → cannot be used for pneumonia; linezolid is favoured for MRSA pneumonia
Special
  • SSSS — toxin-secreting strain, cleavage at stratum corneum; children <5 y; large flaccid blisters that shear (Nikolsky sign +); Rx flucloxacillin
  • TSS — TSST-1 superantigen → cytokine release; historically tampon/vaginal colonisation; abrupt fever, shock, diffuse macular rash, desquamation of palms + soles; ~5% mortality; supportive + eradicate organism
physiology · background · low-yield
Other
  • Decolonisation approach deserving further study — combining topical mupirocin with antibacterial baths (e.g. chlorhexidine) or systemic agents
9

Coagulase-Negative Staphylococci

C/P
  • Much less virulent than S. aureus; skin commensal
  • True infection = prosthetic devices (valves, joints, pacemakers) — biofilm formers
Inves
  • Coagulase-negative (S. epidermidis, S. haemolyticus)
  • Common contaminant in blood cultures, LP, joint tap — clinical judgment needed
Mng
  • High flucloxacillin resistance → glycopeptides (vancomycin) ± oral adjuncts
  • Often requires hardware removal
Special
  • Biofilm on foreign material is the defining niche
10

Streptococcus pyogenes (Group A Strep)

C/P
  • β-haemolytic Group A; highly virulent + transmissible (isolate inpatients)
  • Pharyngitis, skin/soft-tissue infection
  • Post-strep sequelae — rheumatic fever, glomerulonephritis
Inves
  • Throat swab culture; Lancefield grouping (Group A)
Mng
  • Penicillin V 10 days (or amoxicillin 10 d; benzathine penicillin G single IM dose)
  • Pen-allergic — cephalexin/cefadroxil (avoid if immediate hypersensitivity), clindamycin, azithromycin 5 d, clarithromycin
Special
  • Rheumatic fever — cross-reaction of bacterial M-protein with host tissues (rash, migratory arthritis, carditis)
  • Post-strep GN — subepithelial "humps", fibrinoid necrosis → nephritic syndrome (Type III hypersensitivity)
11

Scarlet Fever

C/P
  • Erythrogenic toxin in a host lacking neutralising antitoxin; mainly children
  • 2–4 days after strep pharyngitis; fever, rigors, headache, vomiting, regional lymphadenopathy
  • Rash blanches on pressure, appears day 2, lasts ~5 d, then desquamation; spares face/palms/soles; circumoral pallor
Inves
  • Typical clinical features + throat swab culture
Mng
  • Penicillin (drug of choice) — reduces the 10–21 day infectivity window
Special
  • Strawberry tongue (white coating + prominent bright-red papillae) → raspberry tongue (coating shed, raw red)
  • Complications — peritonsillar / retropharyngeal abscess, otitis media
12

Streptococcus pneumoniae (Pneumococcus)

C/P
  • α-haemolytic, highly virulent, encapsulated diplococcus
  • Commonest — bacterial pneumonia, otitis media; also meningitis + primary bacteraemia
  • In asplenic patients — often no obvious focus, mortality up to 50%
Inves
  • Gram stain — Gram-positive encapsulated diplococci; blood cultures
Mng
  • Ceftriaxone — immediate/empiric (esp. asplenic bacteraemia)
  • Asplenic prevention — PCV13 then PPSV23, MenACWY, Hib, influenza; PO penicillin prophylaxis if <2 y or previous sepsis
Special
  • Encapsulated → overwhelming post-splenectomy infection risk
13

Viridans / Other Streptococci & Enterococci

C/P
  • Viridans (green, α-haemolytic) — mucosal commensals, low virulence → endocarditis if mucosal damage
  • S. milleri group → visceral abscesses (liver / brain)
  • Group B (S. agalactiae) — female genital commensal, neonatal pathogen
  • Enterococci — gut commensal; polymicrobial abdomino-pelvic sepsis, endocarditis + UTI
Inves
  • Blood-agar haemolysis pattern; Lancefield grouping
Mng
  • Enterococci — amoxicillin first-line; glycopeptides (teicoplanin/vancomycin) second-line
  • Enterococci intrinsically resistant to cephalosporins + carbapenems
Special
  • Group D strep bacteraemia → colonic malignancy + endocarditis association
  • S. milleri = the abscess-former
physiology · background · low-yield
Microbiology
  • Groups C & G — cause infections similar to Group A but may be commensal
14

Listeria monocytogenes

C/P
  • Aerobic Gram-positive rod; bacteraemia, meningitis, miscarriage
  • At-risk — immunocompromised, pregnant, >55 y, neonates
Inves
  • Blood-culture Gram stain — Gram-positive rods
  • May produce lymphocytic CSF in meningitis
Mng
  • Amoxicillin / ampicillin (penicillin-sensitive); co-trimoxazole if penicillin anaphylaxis
Special
  • Resistant to cephalosporins — why amoxicillin is added to empiric meningitis cover in >55 y / immunocompromised
  • Food sources — soft cheese, pâté, uncooked/processed meat, coleslaw
physiology · background · low-yield
Epidemiology/Risk
  • Environmental reservoirs — dust, animal feed, water/sewage, numerous animal species and asymptomatic human carriers
15

Corynebacterium & Bacillus

C/P
  • C. diphtheriae — highly contagious oropharyngeal respiratory illness; complication = neuropathy
  • B. anthracis — anthrax (zoonosis); cutaneous + pulmonary forms
  • B. cereus — food poisoning: toxaemia → vomiting; enterotoxin → diarrhoea
Inves
  • Clinical + culture
Mng
  • Diphtheria — antitoxin + erythromycin; public health (childhood immunisation, contact tracing, prophylaxis)
Special
  • Lactobacillus = protective vaginal commensal (guards against bacterial vaginosis)
16

Clostridium botulinum (Botulism)

C/P
  • Descending flaccid paralysis + autonomic dysfunction
  • Sources — foodborne (home canning), wound (IVDU), infant (gut colonisation from honey)
Inves
  • Largely clinical
Mng
  • Supportive (ventilation) + antitoxin; benzylpenicillin + debridement for wound botulism
Special
  • Toxin cleaves SNARE proteins (synaptobrevin, syntaxin, SNAP-25) → blocks acetylcholine release
physiology · background · low-yield
Mechanism
  • Toxin structure — heavy chain binds the neuron receptor + light chain enters the cell and cleaves SNARE proteins
17

Clostridium tetani (Tetanus)

C/P
  • Wound contamination; incubation 24 h – 3 wk (severity ∝ wound proximity/size)
  • Generalised spastic paralysis, muscle spasms, trismus (lockjaw), risus sardonicus, rigidity of abdominal/paraspinal muscles
  • Sympathetic hyperactivity — tachycardia, hypertension, dysrhythmias, sudden death
  • Entry routes — contaminated cuts / burns / animal bites, IV drug use / body piercings / surgery; neonatal tetanus via umbilical stump contamination (childbirth or abortion)
Inves
  • Diagnosis is clinical
Mng
  • Wound cleaning + debridement, muscle relaxants, human tetanus immunoglobulin, benzylpenicillin, active immunisation
Special
  • Toxin = tetanospasmin
  • Prophylaxis = toxoid vaccine + human tetanus immunoglobulin
  • Local tetanus — rigidity + muscle spasm confined to the site of inoculation (vs the generalised form)
physiology · background · low-yield
Other
  • Recurrent tetanic muscle spasms may cause fractures
18

C. perfringens & C. difficile

C/P
  • C. perfringens — food poisoning (enterotoxin → diarrhoea, mass-produced food); gas gangrene after penetrating injury
  • C. difficile — pseudomembranous colitis, antibiotic-associated; complications = toxic megacolon + perforation
Inves
  • C. difficile — toxin detection
Mng
  • C. difficile — stop the offending antibiotic if possible; oral metronidazole or oral vancomycin
Special
  • Oral vancomycin stays in the gut (does not absorb) — ideal for C. diff colitis
19

Nocardia & Actinomyces

C/P
  • Nocardia — immunocompromised patients; pneumonia + brain abscess
  • Actinomyces — anaerobe, mucosal commensal; triggered by IUCD or dental work
Inves
  • Nocardia — weakly acid-fast (stains with Ziehl-Neelsen); grows 3–14 d
  • Actinomyces — slow to grow
Mng
  • Nocardia — co-trimoxazole
  • Actinomyces — penicillin + local excision
Special
  • Both are branched Gram-positive rods; Nocardia is partially/weakly acid-fast

CNS Infections

8 entries
20

Bacterial (Pyogenic) Meningitis

C/P
  • Fever, headache, neck stiffness ± altered conscious level; PMN in CSF
  • Cranial nerve involvement (deafness, imbalance); focal/generalised seizures frequent; Kernig + Brudzinski signs
  • Organisms by age — children <10 + young adults: N. meningitidis, S. pneumoniae · newborns: Group B Strep, E. coli, Listeria · older adults: S. pneumoniae or Listeria
  • Crowded / close-contact settings raise meningococcal risk — university halls, boarding schools, military barracks, prisons, Hajj pilgrimage; Hajj entry requires proof of MenACWY vaccination
Inves
  • LP — after CT if focal signs / reduced GCS / immunocompromised; check papilloedema before (raised ICP contraindicates); opening pressure + protein/glucose/cell count/Gram + culture
  • Bacterial CSF — turbid, low glucose, high protein, ≥1000 WBC (PMN predominant), raised opening pressure, raised LDH (vs viral)
  • Blood cultures ×2, CBC, CRP; PCR
Mng
  • IV ceftriaxone 2 g BD (or cefotaxime 2 g 6-hrly) empirical; add amoxicillin/ampicillin 2 g 4-hrly if >60 y or immunocompromised (Listeria cover)
  • Add vancomycin or rifampicin 600 mg BD if penicillin resistance suspected (recent travel); chloramphenicol 25 mg/kg 6-hrly if penicillin/cephalosporin anaphylaxis
  • Switch to benzylpenicillin if meningococcus confirmed & sensitive; urgently notify public health
  • Close-contact prophylaxis — single-dose ciprofloxacin OR rifampicin 600 mg BD ×2 days
  • Corticosteroids / osmotic diuretics if impending herniation. Duration — meningococcus 5 d · pneumococcus 10–14 d · H. influenzae 10 d · Enterobacteriaceae 21 d
  • Gram-negative bacilli / Enterobacteriaceae — continue cephalosporin + seek specialist advice; consider IV meropenem 2 g tds if resistance suspected (treat 21 days)
Special
  • Non-neuro complications — endocarditis, thrombocytopenia, acute adrenal failure
  • Prevention vaccines — MenC, MenACWY135, pneumococcal, Hib (MenB in trials)
physiology · background · low-yield
Microbiology
  • Adults — also Gram-negative rods (in addition to S. pneumoniae)
Exam technique
  • Brudzinski's sign — neck flexion causes reflex hip + knee flexion; Kernig's sign — hamstring stiffness prevents straightening the leg with hip flexed to 90°
Other
  • Add co-trimoxazole 10-20 mg/kg (four divided doses) if >60 y or immunocompromised AND penicillin anaphylaxis (also alternative for Listeria)
21

Tuberculous Meningitis & CNS TB

C/P
  • TBM — droplet inhalation → Rich focus → ruptures into subarachnoid space → thick basal exudate → cranial nerve palsies + obstructive hydrocephalus
  • TB encephalopathy — infants/children only; convulsions/stupor/coma without meningism or focal deficit
  • Tuberculoma — space-occupying mass → focal deficits + systemic symptoms
Inves
  • CSF — lymphocytic, low glucose, high protein; acid-fast / Ziehl-Neelsen stain
  • Tuberculoma on MRI — well-circumscribed, fibrous-encapsulated (cerebellum, basal ganglia, cortex); often bilateral → little midline shift
Mng
  • Anti-tuberculous therapy (RIPE) — see Antimicrobial Agents
Special
  • Rich focus — subpial/subependymal caseous focus; its rupture seeds the basal cisterns
  • CNS TB classes — TBM, TB encephalopathy, TB vasculopathy, tuberculoma, TB brain abscess (spinal: Pott's spine/paraplegia)
  • TB brain abscess — encapsulated collection of pus with viable tubercle bacilli, without a tubercular granuloma; MRI = thick-walled ring-enhancing cystic lesion with mass effect (mimics pyogenic abscess)
physiology · background · low-yield
Other
  • TB encephalopathy CSF — largely normal or only slight rise in protein/cells (deceptively bland)
  • Spinal CNS TB also includes non-osseous spinal tuberculoma and spinal meningitis (beyond Pott's spine/paraplegia)
22

Brain Abscess

C/P
  • Triad — generalised infection (irregular pyrexia, malaise, nausea) + raised ICP (headache worse on exertion, paroxysmal → severe, papilloedema, projectile vomiting) + focal signs (depend on position)
  • Sources — contiguous (otogenic, sinus, trauma) or haematogenous (IE, empyema/pneumonia)
  • Causative organisms — streptococci and staphylococci (empyema is polymicrobial)
Inves
  • MRI brain with contrast, CT brain, MRV (if venous thrombosis suspected) — ring-enhancing lesion
  • LP is contraindicated (mass effect / raised ICP)
Mng
  • Empirical 3rd-gen cephalosporin (aerobes) + metronidazole (anaerobes)
  • Surgery — excision or stereotactic aspiration; corticosteroids/hyperosmolar agents for cerebral oedema
Special
  • Hollow cavity of liquefactive necrosis walled by reactive glia + neutrophils
  • Subdural empyema — accumulation of pus in the subdural space; polymicrobial (staphylococci + anaerobic gram-negatives)
23

Viral (HSV) Encephalitis

C/P
  • Prodrome (fever, malaise, myalgia) → leptomeningeal irritation (headache, fever, neck stiffness)
  • Disturbed conscious level, generalised/focal fits, behavioural change/agitation
  • HSV targets inferior + medial temporal lobes → haemorrhagic meningoencephalitis
Inves
  • PCR on CSF = gold standard
  • CSF — aseptic pattern (elevated protein, otherwise normal); EEG — temporal epileptiform discharges
Mng
  • IV acyclovir 10 mg/kg tds for 14–21 days; control fever + antiepileptics
Special
  • Temporal-lobe haemorrhagic necrosis; mortality 70% if untreated
  • Eosinophilic intranuclear inclusions — "eosinophilic masses of packed viral particles"
  • Other causes — VZV/chickenpox, measles (→ subacute sclerosing panencephalitis, SSPE), enterovirus, arboviruses
physiology · background · low-yield
Other
  • Complications — respiratory tract, urinary tract, and nosocomial infections
24

Cryptococcal & Fungal CNS Infection

C/P
  • Cryptococcal — subacute lymphocytic meningitis in immunocompromised (HIV CD4 <100); headache, fever
  • Fungal CNS (Candida / Aspergillus / Cryptococcus) — chronic meningitis ± encephalitis, venous sinus thrombosis, brain granuloma/abscess; weeks-to-month onset
  • Rhinocerebral mucormycosis — highly aggressive in immunocompromised (transplant) / poorly-controlled diabetics; spreads from the sinuses → orbit (ophthalmoplegia) → brain with intracranial extension
  • Fungal CNS also causes infarction and mycotic aneurysms (in addition to venous sinus thrombosis and granuloma/abscess)
Inves
  • CSF — lymphocytic, low glucose, raised protein, raised opening pressure
  • India ink — encapsulated yeast (clear halo); cryptococcal antigen + CSF culture
Mng
  • Amphotericin B + 5-flucytosine; start ART after 2 weeks of antifungal therapy
  • Amphotericin B for other fungal CNS infection
Special
  • "Soap bubble" lesions — dilated Virchow-Robin spaces filled with mucoid material
  • Thick polysaccharide (mucin) capsule → paucity of inflammatory response
physiology · background · low-yield
Epidemiology/Risk
  • Cryptococcus environmental source — soil containing bird droppings
25

Rabies

C/P
  • Inoculation of saliva through broken skin (dog bite; 80% give a bite history); incubation 3 wk – months/years
  • Prodrome — flu-like + tingling at bite site; then hallucinations, agitation, delirium, fits
  • Hydrophobia — spasm of pharyngeal + laryngeal muscles at the sound of water
Inves
  • Clinical + bite history
  • Fluorescent antibody technique on saliva/skin/urine/CSF; PCR on CSF
Mng
  • Wound cleaned with detergent + water; passive (human rabies Ig) + active (human diploid cell vaccine) immunity; anticonvulsants + muscle relaxants
  • Give post-exposure prophylaxis immediately after the bite
Special
  • Hydrophobia is the hallmark; may cause paralysis in the bitten extremity
26

Progressive Multifocal Leukoencephalopathy (PML)

C/P
  • JC virus reactivation when immunocompromised (HIV, CLL, natalizumab therapy)
  • Insidious onset but rapid course — progressive behavioural changes, seizures, focal deficit; death within a couple of months
Inves
  • MRI — multifocal subcortical white-matter lesions
Mng
  • No specific treatment (restore immunity where possible)
Special
  • Targets oligodendrocytes → patchy demyelination scattered through the CNS
27

HIV Neurological Complications

C/P
  • HIV (RNA virus) can affect any part of the neuroaxis
  • 3 mechanisms — direct (HAND — HIV-associated neurodegenerative disorder), immunocompromise-related opportunistic infection, peripheral nervous system affection
Inves
  • Depends on mechanism (imaging, CSF for opportunistic pathogens)
Mng
  • ART + treat the specific opportunistic infection
Special
  • Cross-refers to PML, cerebral toxoplasmosis, cryptococcal meningitis, CMV encephalitis

Allergy & Cutaneous Drug Reactions

6 entries
28

Urticaria

C/P
  • Superficial dermal swellings — pruritic, pink or pale-centred; individual wheals come and go within 24 h
  • Acute initially; chronic if ≥6 weeks
  • Distribution — wheals only 50% · wheals + angioedema 40% · angioedema only 10%
  • Causes of acute urticaria — idiopathic 50%, URTI 40%, drugs 9%, foods 1%; drug triggers = NSAIDs, aspirin, ACE inhibitors, opiates, antibiotics, radiocontrast media
Inves
  • CBC (eosinophilia), serum IgE / RAST, skin prick test, challenge test
Mng
  • Allergen avoidance, antihistamines, corticosteroids
  • Leukotriene receptor antagonist (montelukast); omalizumab (SC anti-IgE); desensitisation
Special
  • Mast-cell dependent — allergic (Type I / IgE) or autoimmune; non-immunologic trigger = opiates
physiology · background · low-yield
Mechanism
  • Wheals arise from transient skin/mucosal swellings due to plasma leakage
Exam technique
  • Allergy history — establish time-lag exposure→onset, previous allergic symptoms, drug intake, home allergens (e.g. house dust mites), family history, occupation; reaction usually within minutes, occasionally delayed
29

Angioedema (Hereditary & Acquired)

C/P
  • Deep swellings of skin/mucosa, often painful, no colour change; life-threatening via laryngeal oedema
  • Hereditary — C1 esterase inhibitor deficiency; recurrent angioedema without urticaria/pruritus; high kinin, low complement, +FHx, GI involvement (abdominal pain/diarrhoea)
  • Acquired — ACE inhibitors, malignancy, autoimmune disease
Inves
  • C1 esterase inhibitor level + complement studies
Mng
  • Anti-kinin directed; stop ACE inhibitor
  • Kinin-dependent → antihistamines + adrenaline are ineffective
Special
  • ACEi mechanism — inhibits bradykinin degradation (kininase) → elevated bradykinin → vascular permeability (mast-cell independent)
physiology · background · low-yield
Background
  • HAE swelling sites — legs, hands, face, upper respiratory tract, GI tract
30

Anaphylaxis

C/P
  • Rapid onset; requires priming + re-exposure; systemically absorbed allergen (ingested/parenteral)
  • Initial tingling/itching/warmth → generalised flush, hypotension, bronchospasm, facial/laryngeal oedema
  • N/V/D; arrhythmias/MI can follow; death within minutes
Inves
  • Clinical diagnosis — do not delay treatment for tests
Mng
  • ABCDE — lie flat, feet raised; clear airway; O₂; venous access
  • Adrenaline SC 0.5 mg (first-line) + IV hydrocortisone; admit ICU
  • Long-term — prevention, EpiPen (self-administered epinephrine pen), desensitisation
Special
  • Combines angioedema (deep swelling) + urticaria (rash) + systemic compromise
31

Erythema Multiforme

C/P
  • Target lesions favouring acrofacial / extremity sites
  • EM minor — no mucosal/systemic involvement · EM major — extremities+face, severe mucosal, systemic (fever/arthralgia)
Inves
  • Clinical
Mng
  • Treat precipitant + supportive care
Special
  • Most common precipitant = preceding HSV infection (also Mycoplasma pneumoniae); drugs rare
  • Does NOT progress to TEN
32

Stevens-Johnson Syndrome / TEN

C/P
  • Severe mucocutaneous — high fever (39 °C), tachycardia, hypotension (90/60), severe mucosal erosions (crusted lips/eyes, inability to swallow), progressive skin peeling
  • Triggers — drugs: NSAIDs, antibiotics, antiepileptics (e.g. carbamazepine)
  • SJS <10% BSA · overlap 10–30% · TEN >30% detachment
  • Systemic toxicity in SJS — fever, lymphadenopathy, hepatitis, cytopenia; severe mucosal involvement can cause malnutrition
Inves
  • History + clinical; skin biopsy (clinicopathological correlation); CBC, U&E, LFTs
Mng
  • Stop the offending drug; admit (ITU for TEN); fluid replacement + urinary catheter; wound + eye + mouth care
  • IVIg (first-line), cyclosporine, prednisolone, biological agent (etanercept); exclude infection
  • Burn-unit supportive care — oil-based emollient, warmth, IV fluid if necessary
Special
  • Type IV hypersensitivity; TEN > SJS severity — dermatological emergency
33

Exanthematous (Morbilliform) Drug Eruption

C/P
  • Most common cutaneous drug reaction
  • Erythema, macules + papules; confluence on the trunk; prominent pruritus; no mucosal/systemic toxicity
Inves
  • Clinical
Mng
  • Topical steroids, antihistamines, supportive; clears within 2 weeks of stopping the drug
Special
  • Self-limiting — the benign end of the cutaneous drug-eruption spectrum

Herpesviruses

5 entries
34

Herpes Simplex Virus (HSV 1 & 2)

C/P
  • HSV-1 orolabial (herpetic gingivostomatitis in children, cold sores) · HSV-2 genital
  • Painful grouped vesicles on erythematous base; prodrome tingling/pain/itching 6–12 h before lesions
  • Complications — herpetic whitlow (fingers), gladiatorum (contact sports), eczema herpeticum (atopic dermatitis), keratoconjunctivitis, neonatal herpes (HSV-2), HSV encephalitis
  • Primary genital herpes — severe systemic illness ~3 wk (fever, dysuria, herpetic proctitis, inguinal lymphadenopathy, complications common); recurrent is milder + shorter (8–10 d)
  • Erythema multiforme — target lesions (an HSV-triggered eruption)
  • Neonatal herpes (HSV-2, mother's 3rd-trimester primary infection) — 3 forms: localised skin/eye/mouth (40%), CNS/encephalitis (35%), disseminated hepatitis/pneumonia (25%, fatal); may present up to 6 wk post-delivery
  • Ocular HSV — keratitis, retinal necrosis and chorioretinitis can lead to blindness (beyond keratoconjunctivitis)
Inves
  • Clinical (main); PCR = gold standard for CNS; viral culture within 48 h; immunofluorescence distinguishes type 1 vs 2
  • Tzanck smear — multinucleated giant cells + eosinophilic intranuclear inclusions (rapid)
  • Dendritic corneal ulcer highlighted by Rose Bengal stain
Mng
  • Acyclovir oral/topical/IV per severity; valaciclovir + famciclovir = prodrugs with greater oral bioavailability; effective within 72 h of lesion
  • Neonatal — IV acyclovir 20 mg/kg tds ×3 wk; encephalitis — IV acyclovir 10 mg/kg tds 2–3 wk
  • Neonatal prevention — screen pregnant women, elective Caesarean section, prophylactic acyclovir in 3rd trimester until delivery
Special
  • Latency in sensory ganglia — HSV-1 trigeminal, HSV-2 sacral (retrograde axonal transport)
  • Reactivation triggers — stress, fever, UV light, tissue damage, immunosuppression
physiology · background · low-yield
Epidemiology/Risk
  • HSV-1 ~50% seropositive by age 30; HSV-2 seroprevalence rises with age (~5% → 15%) and partner number; genital ulcers increase HIV-acquisition risk
Other
  • Immunocompromised — erosive mucocutaneous lesions are HSV until proven otherwise; progressive spread to respiratory tract, oesophagus, GI tract; treat empirically on suspicion
Epidemiology/Risk
  • HSV encephalitis incidence ~1 per million per year
35

Varicella / Chickenpox

C/P
  • Usually children; incubation 10–20 d; fever prodrome
  • Pruritic macule → papule → vesicle → pustule → crust; generalised polymorphic, mainly trunk + head; heals 1–3 wk, may scar
  • Severe in adults (esp. pregnant) + immunocompromised
  • Highly communicable — airborne/droplet/direct contact; infectious from 48 h before rash (respiratory secretions) + vesicle fluid
Inves
  • Clinical; DFA, PCR (vesicle fluid), Tzanck smear (multinucleated giant cells)
Mng
  • Symptomatic — trim nails, calamine, oral antihistamine, acetaminophen; avoid NSAIDs
  • Antivirals — immunocompromised: IV acyclovir 10 mg/kg tds; pregnant/adults within 3 d of rash: oral acyclovir 800 mg 5×/day or IV
Special
  • Complications — secondary bacterial infection, pneumonitis, haemorrhagic chickenpox (immunocompromised), encephalitis/cerebellar ataxia, congenital varicella syndrome
  • VZIG for high-risk exposed contacts
physiology · background · low-yield
Other
  • Neurological complications also include transverse myelitis (alongside encephalitis / cerebellar ataxia)
36

Herpes Zoster (Shingles)

C/P
  • Reactivation of latent VZV from sensory ganglia; elderly + immunocompromised
  • Pain precedes lesions; painful grouped herpetiform vesicles on erythematous base; unilateral dermatomal; head + trunk
  • Phases — pre-eruptive (1–10 d) → acute eruptive → chronic (PHN)
Inves
  • Clinical; DFA, PCR, Tzanck smear
Mng
  • Rest + analgesics; oral acyclovir 800 mg 5×/day ×7 d (within 72 h); calamine; anticonvulsants (gabapentin/pregabalin)
  • Immunocompromised — IV acyclovir 10 mg/kg tds; ophthalmic — within 7 d, oral ACV or valaciclovir
Special
  • PHN — pain ≥1 month post-infection; TCAs (nortriptyline/amitriptyline), capsaicin/lidocaine, gabapentin
  • Forms — Ramsay Hunt syndrome (zoster oticus), zoster ophthalmicus, disseminated zoster (>10–12 extra-dermatomal vesicles), zoster sine herpete
  • Prevention — Varivax (children), Shingrix (older adults — more complications)
  • CNS involvement (immunocompromised) — anterior-horn motor weakness, cranial-nerve palsies, diaphragmatic paralysis, Guillain-Barré, transverse myelitis; meningoencephalitis life-threatening; CSF pleocytosis without raised protein
physiology · background · low-yield
Other
  • Disseminated zoster mortality 5–15% (encephalitis, hepatitis, pneumonitis); >10–12 extra-dermatomal vesicles 7–14 d after onset = sign of suppressed immunity
  • PHN — sustained-release oxycodone 10–20 mg bd as an additional analgesic option
37

Cytomegalovirus (CMV)

C/P
  • Immunocompetent — asymptomatic or mononucleosis (fever, rash, leucocytosis) without pharyngeal exudate or heterophile antibodies (vs EBV)
  • Immunocompromised (CD4 <50) — retinitis, pneumonitis, colitis (GI bleeding), hepatitis, encephalitis
  • Congenital — commonest cause of congenital infection; sensorineural hearing loss (TORCH)
  • Immunocompromised end-organ disease also includes oesophagitis, poly-radiculopathy, transverse myelitis, sub-acute encephalitis, pancytopenia; CMV hepatitis → fulminant liver failure
  • Congenital CMV — growth retardation / low birth weight, congenital malformations, fetal loss (stillbirth)
Inves
  • Histology — CMV inclusion bodies (basophilic intranuclear "owl's eye" with clear halo); IHC; quantitative PCR
Mng
  • IV ganciclovir (gold standard), oral valganciclovir; foscarnet or cidofovir if ganciclovir-resistant
  • Intravitreal ganciclovir for retinitis; prevention — seronegative donor, safe blood products
  • Prophylactic antivirals for all at-risk (seropositive) patients; CMV immunoglobulin has limited role; vaccine under development
Special
  • "Owl's eye" intranuclear inclusions; "pizza-pie" retinitis on fundoscopy
  • Cytomegalic cells 2–4× larger than normal; latency in monocytes/myeloid progenitors
physiology · background · low-yield
Epidemiology/Risk
  • Transmission — blood products / organ transplant, breastfeeding, close-contact shedding, perinatal, sexual
Background
  • CMV infection = virus present in body fluid/tissue; CMV disease = infection + symptoms and/or end-organ involvement
Other
  • A negative PCR does not exclude CMV in the immunocompromised; drug-resistance testing (e.g. ganciclovir resistance) available
38

Epstein-Barr Virus (EBV) / Infectious Mononucleosis

C/P
  • Transmission via saliva (kissing disease); incubation 30–50 d
  • Infectious mononucleosis triad — tonsillitis + exudate, fever, lymphadenopathy; fatigue, malaise, splenomegaly
  • Complications — splenic rupture, airway obstruction (tonsillar oedema), acute acalculous cholecystitis
Inves
  • CBC — lymphocytosis with atypical lymphocytes; LFTs may be abnormal
  • Heterophile antibody test (Monospot) — IgM; VCA IgM (acute) / IgG (chronic)
Mng
  • Symptomatic (analgesics/antipyretics); corticosteroids if airway compromise or autoimmune complications; antivirals reduce oral shedding
  • Splenic rupture — conservative (analgesia, splenic artery embolisation) or splenectomy (needs post-op immunisation + antibiotics); airway obstruction — steroids, tracheotomy/intubation
Special
  • Oncogenic — nasopharyngeal carcinoma (S Asia), endemic Burkitt's lymphoma (tropical Africa), Hodgkin's, PTLD/NHL (AIDS/transplant), X-linked lymphoproliferative (Duncan)
  • Avoid contact sports (splenic rupture risk)
  • Other complications — myocarditis, encephalitis, haemophagocytic lymphohistiocytosis, pancreatitis, autoimmune haemolytic anaemia
  • DDx of glandular fever — CMV, HIV, HHV-6, Toxoplasma
physiology · background · low-yield
Background
  • Discovered 1964; 2 types (A/B); immortalises/transforms B cells; no approved vaccine to date
Other
  • Post-acute — organomegaly persists 1–3 months; chronic fatigue syndrome may develop

HIV & Opportunistic Infections

9 entries
39

HIV Infection & Antiretroviral Therapy

C/P
  • RNA retrovirus; transmission — sexual, blood transfusion, infected needles
  • Acute HIV — fever, myalgia/arthralgia, fatigue, headache ± lymphadenopathy + pharyngitis
  • Opportunistic-infection risk stratified by CD4 count (→ Criteria tab)
Inves
  • HIV-1/2 serology; CD4 count (predisposition to OI when <50/µL)
Mng
  • HAART / ART — 4 classes: entry inhibitors (CD4/CCR5/CXCR4), reverse transcriptase inhibitors, integrase inhibitors, protease inhibitors
  • Retroviral cycle target — endocytosis → uncoating → reverse transcription → integration → transcription → assembly → budding
Special
  • CD4 <50 → tissue-invasive OI (CMV, MAC); AIDS-defining illnesses (PCP, toxo, Kaposi, etc.)
physiology · background · low-yield
Background
  • Organ-based opportunistic-infection map — pulmonary (mycobacterial, CMV, Pneumocystis) · GI (MAC, CMV, Cryptosporidium) · CNS (Cryptococcus, HSV, CMV, Toxoplasma) · malignancy (Kaposi sarcoma, non-Hodgkin lymphoma)
Epidemiology/Risk
  • Diarrhoea is perhaps the most common complaint in AIDS — nearly 100% of AIDS patients in developing countries report it (opportunistic causes: MAC, CMV, Cryptosporidium)
40

Pneumocystis jirovecii Pneumonia (PCP)

C/P
  • Opportunistic yeast-like fungus; HIV (CD4 <200), BMT, haematological malignancy, steroids
  • Progressive exertional dyspnoea (95%) + non-productive dry cough (95%), fever, chest discomfort, weight loss; haemoptysis rare
Inves
  • HRCT — diffuse ground-glass opacity, perihilar; CXR — bilateral ground-glass pneumonitis
  • Induced sputum (HIV) or BAL; silver stain (Gomori methenamine — cup/boat-shaped cysts 4–6 µm, brownish-black), fluorescent antibody, PCR, Beta-D glucan
Mng
  • Co-trimoxazole (trimethoprim-sulfamethoxazole) — drug of choice; ART
  • Does NOT respond to antifungal therapy despite being a fungus
Special
  • Alveoli filled with pink foamy amorphous exudate → the dry, non-productive cough
physiology · background · low-yield
Microbiology
  • Alternative histological forms — solitary necrotizing granulomas or miliary disease, which lack the classic intra-alveolar foamy exudate; usual reaction is mild (fibrin exudate + hyaline membranes). Chills also a listed symptom.
Epidemiology/Risk
  • Transmission is airborne / person-to-person
41

Cerebral Toxoplasmosis

C/P
  • Leading cause of focal CNS disease in AIDS; late phase; CD4 <100–200 (greatest risk <50)
  • Confusion/drowsiness, seizures, focal weakness, language disturbance, headache/fever; chorioretinitis
  • Reactivation of Toxoplasma gondii
  • If untreated → progresses into coma
Inves
  • Serology — rising anti-Toxoplasma IgG (reactivation); IgM if newly acquired
  • MRI (superior) — multiple ring-enhancing lesions (characteristic but not diagnostic)
  • Brain biopsy if single lesion + negative serology OR no response to 14 d empiric therapy
  • Ring-enhancing lesion DDx (identical MRI appearance) — primary CNS large B-cell lymphoma, CNS tuberculosis, CNS fungal infection
Mng
  • Sulphadiazine + pyrimethamine + folinic acid (therapeutic trial often precedes biopsy)
Special
  • True cyst wall containing bradyzoites; usually multiple lesions (vs solitary lymphoma)
physiology · background · low-yield
Mechanism
  • Mechanisms beyond reactivation — haematogenous spread of previously acquired infection; occasionally primary infection
Epidemiology/Risk
  • Reactivation risk criteria — CD4 <100/mm³ + Toxoplasma-seropositive + not on effective prophylaxis/HAART
Microbiology
  • Biopsy histology — lymphocytic meningitis, astroglial/microglial nodules (reparative), lymphocytic vasculitis, diffuse encephalitis
42

Primary CNS Lymphoma

C/P
  • 2nd most common mass lesion in AIDS (after toxoplasmosis); diffuse large B-cell; late HIV
  • EBV-associated in almost all cases; focal signs + altered mental status
Inves
  • CSF EBV (vs serum anti-Toxoplasma antibodies); MRI — usually solitary (vs multiple in toxo)
  • Stereotactic brain biopsy for definitive diagnosis — vasocentric infiltrates of large lymphocytes
Mng
  • Radiotherapy (2–5 mo survival, benefits >75%) + chemotherapy (16–28 mo); improved with HAART; ~1 mo untreated
Special
  • Solitary lesion + CSF EBV distinguishes it from (multiple, serum-antibody) toxoplasmosis
physiology · background · low-yield
Other
  • vs Toxoplasmosis — headache is a constant finding in toxo (inflammation) but site-dependent in lymphoma; lymphoma infiltrates may show areas of necrosis
43

Kaposi Sarcoma

C/P
  • Low-grade angioproliferative vascular tumour; HHV-8 / KSHV; AIDS-defining
  • Variants — classic (elderly men, lower limb) · endemic African · iatrogenic (transplant) · AIDS-associated (most aggressive, disseminated)
  • Violaceous patch → plaque → nodule; skin, lung, GI tract
Inves
  • Biopsy — dermal spindle-cell fascicles + blood-filled slit-like spaces; IHC for HHV-8 (nuclear staining)
Mng
  • ART (primary); intralesional vinblastine; IV doxorubicin
Special
  • HHV-8-driven; spindle cells; multiple clinical stages may coexist
physiology · background · low-yield
Epidemiology/Risk
  • Classic/sporadic variant — Mediterranean, Eastern Europe & central equatorial Africa; indolent course; may associate with a secondary malignancy
Mechanism
  • Pathogenesis — HHV-8-infected endothelial cells undergo altered lymphatic differentiation + cytokine-driven angiogenesis; cell of origin = pluripotent mesenchymal progenitor cell
44

Mycobacterium avium Complex (MAC)

C/P
  • Non-tuberculous mycobacteria (M. avium + M. intracellulare); environmental
  • Severe immunodeficiency (CD4 <50); fever, lethargy, diarrhoea
Inves
  • Endoscopic biopsy, blood cultures, bone-marrow cultures
  • Diffuse yellowish-white nodules 5–10 mm (duodenum); foamy histiocytes (H&E) packed with acid-fast organisms
Mng
  • Macrolide-based antimycobacterial therapy + immune reconstitution (ART)
Special
  • Foamy histiocytes stuffed with acid-fast bacilli — no robust granuloma in the immunocompromised host
45

Cryptosporidium parvum

C/P
  • Protozoal parasite; self-limited in immunocompetent, fulminant in immunocompromised
  • Severe explosive watery diarrhoea in AIDS; distal ileum + proximal colon
Inves
  • Oocysts in stool with modified acid-fast stain
  • Biopsy — 2–5 µm round basophilic "blue beads" at apex of enterocytes (intracellular but extra-cytoplasmic)
Mng
  • Immune reconstitution (ART) — prognosis tied to immune recovery
Special
  • "Blue beads" on the enterocyte luminal border (contrast: H. pylori sits outside the cell)
physiology · background · low-yield
Epidemiology/Risk
  • CD4-dependent course — CD4 <50 → fulminant diarrhoea; CD4 >150–180 → self-limited
Microbiology
  • Associated epithelial changes — cryptitis and epithelial apoptosis
46

Invasive Pulmonary Aspergillosis

C/P
  • Neutropenic host (ANC <0.5 ×10⁹/L, esp. prolonged) — e.g. ALL post-chemotherapy
  • Fever persisting despite broad-spectrum antibiotics
Inves
  • CT — halo sign (consolidation + surrounding ground-glass) + crescent sign
  • BAL histology + culture; galactomannan (BAL/serum), Beta-D glucan; species — A. fumigatus, flavus, niger, terreus
Mng
  • Antifungals — amphotericin, azoles, or echinocandins
Special
  • Halo + crescent signs; risk directly proportional to the duration of neutropenia
47

Molluscum Contagiosum

C/P
  • Poxvirus; direct contact / fomites / sexual / autoinoculation
  • Multiple firm pruritic pink umbilicated nodules ≤4 mm; skin/trunk/face/anogenital
  • Large + widespread on the face in immunocompromised
Inves
  • Clinical; histology — eosinophilic cytoplasmic inclusions (molluscum bodies) displacing nuclei peripherally
Mng
  • Self-limiting in immunocompetent; supportive / lesion-directed therapy
Special
  • Central umbilication + molluscum bodies are the signature
physiology · background · low-yield
Microbiology
  • Architecture — lobulated endophytic hyperplasia forming a circumscribed intradermal pseudotumor

Immunocompromised & Transplant Host

5 entries
48

Opportunistic Infection — Principles & Sources

Definition
  • Infections that are more frequent or more severe because of immunosuppression
  • Organisms — low-pathogenicity (CoNS, Pseudomonas, Candida, PCP, CMV) OR conventional pathogens causing atypical/disseminated disease
  • Atypical examples — miliary TB (renal transplant), measles (leukaemic child), disseminated HSV (BMT), CNS toxoplasmosis (AIDS)
Sites
  • Mouth/throat, skin, gut, lungs, kidneys/bladder (catheter), drip/central-line site
Mng
  • Pathogen-directed therapy + restore immunity where possible
Special
  • Endogenous (gut flora, Candida, HSV reactivation) vs exogenous (MRSA, resistant GNB, Aspergillus, Pseudomonas, Listeria, transplant CMV)
  • Immune-defect → pathogen: humoral/antibody defect (myeloma, CLL, AIDS) → encapsulated bacteria (S. pneumoniae, H. influenzae), Mycoplasma, Campylobacter, Giardia, enterovirus; T-cell defect (HIV, lymphoma, steroids) → intracellular pathogens (viruses, TB, protozoa) + fungi
  • Complement deficiency → S. pneumoniae, Neisseria; asplenia (splenectomy, trauma, sickle cell) → encapsulated organisms (S. pneumoniae, H. influenzae, N. meningitidis) + Plasmodium
physiology · background · low-yield
Microbiology
  • Additional exogenous sources — environmental mycobacteria; hands/environment/air/water/food
Background
  • Clinical approach — define the clinical syndrome, timeline, exposure risk; characterise the immunodeficiency (type, how profound, duration); consider both typical and unusual pathogens (sometimes >1 present)
  • Patient prevention advice — neutropenic diet (no raw meat/eggs, wash fruit/veg), avoid cat litter/animal waste + gloves for gardening (mould/zoonoses), electric shaver + soft toothbrush to avoid trauma
49

Primary Immunodeficiency Disorders

Overview
  • >400 inborn errors of immunity (>200 single-gene mutations); predispose to autoimmunity + malignancy
  • Distribution — antibody (65%, most common) · combined cellular+antibody (15%) · phagocytic (10%) · cellular (5%) · complement (5%)
Inves
  • Immunoglobulin subclass levels; genetic testing
Mng
  • Immunoglobulin replacement / definitive therapy per subtype
Special
  • Combined — SCID, Wiskott-Aldrich (small platelets, thrombocytopenia, eczema, bloody diarrhoea), DiGeorge (thymic), Hyper-IgE
  • Antibody — X-linked agammaglobulinemia (BTK mutation), CVID; Phagocyte — chronic granulomatous disease (oxidative burst), Kostmann (HAX1); Autoinflammatory — familial Mediterranean fever
  • Leucocyte adhesion defect — phagocyte adhesion failure; presents with leucocytosis + periodontitis
physiology · background · low-yield
Microbiology
  • Further subtypes — antibody: CD40L deficiency (hyper-IgM); immune dysregulation: familial haemophagocytic lymphohistiocytosis; innate: TLR mutations; complement phenocopy: interleukin autoantibodies; syndromic combined: DNA-repair defects
Background
  • CVID — characterised by ≥2 reduced antibody subclasses
50

Secondary Immunodeficiency

Causes
  • Infection (HIV, measles, mumps, rubella), malignancy (Hodgkin, CLL, myeloma, solid tumours)
  • Immunosuppressive drugs, malnutrition, age extremes, splenectomy/trauma, autoimmune (SLE, RA)
  • Metabolic (diabetes, renal/hepatic insufficiency), burns, major surgery, alcohol, pregnancy
Inves
  • Directed at the underlying cause
Mng
  • Treat/remove the cause + targeted prophylaxis
Special
  • Immunosuppressive therapy is the commonest iatrogenic cause (chemotherapy, transplant conditioning, GVHD, rejection)
physiology · background · low-yield
Epidemiology/Risk
  • Further causes — radiation, toxic chemicals, IV drug abuse, allogeneic blood transfusion; infective (bacterial, mycobacterial, parasitic)
51

Neutropenia & Febrile Neutropenia

C/P
  • ANC <500/µL = increased serious-infection risk; <100/µL = severe (duration + severity correlate with infection)
  • Low-grade fever, sore mouth, odynophagia, gingival pain, skin abscesses, recurrent sinusitis/otitis, pneumonia
  • Febrile neutropenia — >38.3 °C single reading OR >38 °C sustained >1 h
Inves
  • ANC = WBC × (% neutrophils + % bands); blood cultures
  • Weekly CMV PCR + galactomannan in BMT patients
Mng
  • Start antibiotics immediately; empiric monotherapy — cefepime, meropenem, imipenem-cilastatin, or piperacillin-tazobactam
  • Add aminoglycoside (gentamicin) if unstable/septic; add vancomycin if MRSA or Corynebacterium suspected
  • Prophylaxis high-risk (<100 for >7 d) — oral fluoroquinolone + antifungal (triazole or echinocandin)
Special
  • Gram-negatives most concerning; S. epidermidis the notable GP organism (indwelling central line); fungal (Candida, Aspergillus) with persistent/recurrent fever
physiology · background · low-yield
Microbiology
  • Viral causes (preventable with prophylaxis) — reactivation of HSV-1/2, VZV, EBV, CMV; community respiratory viruses (adenovirus, rhinovirus, coronavirus, metapneumovirus)
  • Common source flora — gut: Enterobacteriaceae, Enterococcus, oral streptococci, Candida, Pseudomonas; skin: coagulase-negative staph, diphtheroids; anaerobic/polymicrobial rare; consider TB if risk factors
Background
  • Stop all suspected offending drugs until the aetiology is established (drug-induced neutropenia)
52

Infections in Organ Transplantation

Sources & Timeline
  • Sources — donor-derived, nosocomial/technical, reactivation of latent infection, community-acquired, recipient-derived
  • <1 month — nosocomial/technical: MRSA, VRE, catheter/wound/aspiration, C. difficile, anastomotic leaks; donor-derived (HSV, West Nile, rabies)
  • 1–6 months — opportunistic: PCP, herpesviruses (HSV/VZV/CMV/EBV), BK virus nephropathy, Listeria/Nocardia/Toxoplasma, TB, cryptococcus
  • >6 months — community-acquired (CAP, UTI), fungal (Aspergillus, Mucor, Nocardia), late viral (CMV colitis/retinitis, hepatitis, HSV encephalitis, PML), malignancy (skin cancer, PTLD)
Inves
  • Pathogen-directed; preemptive weekly CMV PCR + galactomannan in high-risk patients
Mng
  • Prophylaxis — cotrimoxazole (renal transplant at 3 months); BMT — cotrimoxazole + itraconazole + aciclovir
Special
  • Latent-infection reactivation (CMV, HSV, TB) is the defining transplant risk; CMV donor/recipient serostatus mismatch drives morbidity
physiology · background · low-yield
Microbiology
  • Additional <1 month — non-albicans Candida; donor-derived LCMV, HIV, Trypanosoma cruzi (Chagas); recipient colonisers Aspergillus/Pseudomonas
  • Additional 1–6 month — Strongyloides, Leishmania, HBV/HCV, adenovirus/influenza; >6 month — Rhodococcus, atypical moulds

Antimicrobial Agents

8 entries
53

Beta-lactams

Spectrum
  • Inhibit bacterial cell-wall synthesis. Narrow — penicillin, amoxicillin, flucloxacillin · Broad — co-amoxiclav, piperacillin-tazobactam · Cephalosporins — cefuroxime, cefotaxime, ceftriaxone · Carbapenem — meropenem
  • Good GP + GN (broader agents); resistant-GN best = pip-taz, meropenem; anaerobes (broad agents); no mycobacteria
Clinical Use
  • Most commonly used class — respiratory/IE, skin/soft tissue/bone/joint, UT/GU, meningitis (cross BBB when inflamed); often in combinations
PK / Specific Drugs
  • Oral + IV; good tissue penetration; renally excreted
  • Flucloxacillin — penicillinase-resistant, anti-staph (impetigo, cellulitis, septic arthritis, osteomyelitis)
  • Co-amoxiclav = amoxicillin + clavulanic acid (β-lactamase inhibitor) — covers S. aureus, E. coli, H. influenzae
  • Flucloxacillin also covers staph pneumonia and infective endocarditis (and folliculitis) beyond skin/joint infection
Toxicity & Resistance
  • Rash/hypersensitivity 1–10%, anaphylaxis 0.05%; antibiotic-associated colitis (cephalosporins/broad-spectrum)
  • Absolute CI = anaphylaxis/serious hypersensitivity; safe in pregnancy
54

Glycopeptides (Vancomycin, Teicoplanin)

Spectrum
  • Inhibit cell-wall synthesis (earlier stage than β-lactams); Gram-positive only (aerobic + anaerobic), no GN
Clinical Use
  • GP infection when resistance or penicillin anaphylaxis a problem — MRSA, enterococci
  • Oral vancomycin for C. difficile colitis
PK / Dosing
  • IV usually (teicoplanin can be IM); oral vanco stays in the gut; long half-life (once/twice daily); renal excretion
  • Renal impairment is not an absolute contraindication — prescribe less frequently + monitor levels more closely
Toxicity & Resistance
  • Nephrotoxicity + ototoxicity — monitor levels (vanco > teico)
  • "Red person syndrome" if vancomycin infused too fast — give at 1 mg/min
55

Macrolides

Spectrum
  • Erythromycin, clarithromycin, azithromycin. Inhibit protein synthesis (peptide chain dissociates during translocation)
  • Good GP (staph resistance a problem); poor GN except respiratory (H. influenzae, Legionella, M. cat); good intracellular (chlamydia); clarithromycin = mycobacteria
Clinical Use
  • Alternative to β-lactams (respiratory/skin); atypical pneumonia; Campylobacter/enteric; azithromycin for chlamydia + enteric fever
PK / Dosing
  • Oral + IV; good tissue penetration; azithromycin = long half-life (intracellular); renal excretion
Toxicity & Resistance
  • GI disturbance (erythromycin worst); azithromycin CI in hepatic impairment
physiology · background · low-yield
Exam technique
  • Shared class suffix mnemonic — "-THROMYCINS"
56

Aminoglycosides

Spectrum
  • Gentamicin, amikacin, streptomycin. Inhibit protein synthesis (30S — codon misreading)
  • Lack activity vs streptococci (use synergistically with penicillins); good GN + Pseudomonas; no anaerobes; poor intracellular; streptomycin = mycobacteria
Clinical Use
  • Not monotherapy (except ear/eye drops); empirically with a β-lactam; septicaemia (urinary/biliary/respiratory/GI); IE with β-lactam
PK / Dosing
  • Poorly absorbed orally → given by injection; renal excretion
  • Gentamicin 7 mg/kg; send a 6–14 h post-dose level (Hartford nomogram)
Toxicity & Resistance
  • Ototoxicity + nephrotoxicity — monitor levels; care when co-administered with diuretics
57

Quinolones

Spectrum
  • Ciprofloxacin, moxifloxacin, levofloxacin. Inhibit DNA gyrase (nucleic-acid synthesis)
  • Poor GP (moxi/levo good for S. pneumoniae); good GN + Pseudomonas (moxifloxacin has NO pseudomonas activity); limited anaerobes; intracellular (enteric fever, Legionella); moxi = mycobacteria
Clinical Use
  • When GN a problem + patient penicillin-allergic; UTI, GI infection; moxifloxacin for LRTI + mycobacterial
PK / Dosing
  • Oral + IV
Toxicity & Resistance
  • Lowers seizure threshold; tendon damage; not licensed in children (effects on immature joints) — relative
physiology · background · low-yield
Mechanism
  • DNA gyrase inhibition blocks relaxation of positively supercoiled DNA
58

Anti-tuberculous Drugs

First-line Agents
  • Rifampicin · Isoniazid · Pyrazinamide · Ethambutol (RIPE)
Clinical Use
  • Pulmonary + extra-pulmonary TB (including TB meningitis)
Regimen
  • Used in combination to prevent resistance
Note
  • Rifampicin also used for meningococcal prophylaxis (600 mg BD ×2 days)
59

Antifungal Agents

Targets & Classes
  • Yeasts + filamentous fungi; local to invasive infection. Three classes — azoles, polyenes, echinocandins
Clinical Use
  • Chosen by fungal species + severity (e.g. amphotericin B for CNS/invasive disease)
Mechanisms
  • Azoles (fluconazole, itraconazole) — inhibit ergosterol synthesis/binding in the cell membrane
  • Polyenes (amphotericin) — bind ergosterol → form pores → leakage + cell death
  • Echinocandins (caspofungin)
Note
  • Amphotericin B is the workhorse for fungal CNS infection (± 5-flucytosine for cryptococcus)
60

Antimicrobial Prophylaxis & Stewardship

Prophylaxis Indications
  • Secondary N. meningitidis / H. influenzae meningitis cases; pneumococcal (asplenia/hyposplenism); TB close contacts; surgical patients; rheumatic-fever recurrence
Stewardship Principle
  • "Start Smart then Focus" — do NOT start antibiotics without clinical evidence of bacterial infection
Start Smart
  • Drug-allergy history; prompt effective treatment (within 1 h for severe sepsis); comply with local guidance; document indication/dose/route + review/stop date; obtain cultures before therapy where possible
Then Focus & Resistance
  • Review at 48–72 h → STOP · IV-to-oral switch · change · continue · OPAT
  • Resistance — natural vs acquired; mechanisms (reduced permeability, efflux, degradation, target modification/protection); genetic — chromosomal mutation (vertical); conjugation/transduction/transformation (horizontal)
physiology · background · low-yield
Microbiology
  • Horizontal resistance transfer — conjugation (plasmid-mediated), transduction (phage DNA), transformation (donor DNA); vertical = chromosomal mutation
Background
  • Side effects common to most antimicrobials — nausea, diarrhoea, rash; common contraindications — liver failure, renal failure, children, pregnancy

Tropical & Imported Infections

5 entries
61

Enteric Fever (Typhoid)

C/P
  • Salmonella (typhi/paratyphi); return from endemic area (e.g. India)
  • Unremitting stepwise fever, headache, abdominal pain + constipation
  • Relative bradycardia (Faget sign); rose spots on abdomen; hepatomegaly
Inves
  • Blood cultures ×3 — grow a Gram-negative organism (Salmonella)
Mng
  • Ceftriaxone 2 g IV OD (after sending cultures) then oral azithromycin for 7 days
Special
  • Faget sign (relative bradycardia) + rose spots (blanchable erythematous papules) = the classic pairing
62

Tick Typhus (Rickettsia)

C/P
  • Return from African game park / South Africa; fever + lethargy
  • Eschar (bite with a scab), local lymphadenopathy, sparse papular rash
Inves
  • Rickettsial serology
Mng
  • Doxycycline for 7 days
Special
  • The eschar at the tick-bite site is the diagnostic clue
  • The eschar is classically termed the tache noire; classic triad = fever + sparse maculopapular rash + eschar
physiology · background · low-yield
Epidemiology/Risk
  • a.k.a. African tick bite fever — very common in South Africa and the Mediterranean
63

Amoebic Liver Abscess

C/P
  • Return from endemic area (e.g. India); fever, sweats, RUQ pain but no diarrhoea
  • Tender hepatomegaly + dull right lung base (raised hemidiaphragm)
  • Causative organism Entamoeba histolytica; can cause a right-sided pleural effusion / raised hemidiaphragm
Inves
  • Neutrophilia, raised ALP; USS — abscess in right liver lobe
  • Amoebic serology positive in 95–100%
Mng
  • Metronidazole (or tinidazole) PLUS diloxanide furoate (luminal agent)
Special
  • Amoebic serology is highly sensitive; abscess classically in the right lobe
64

Schistosomiasis

C/P
  • Freshwater exposure in Africa; tiredness, urinary frequency, haematuria
  • Brief itchy, slightly oedematous rash while away = Katayama fever (acute schistosomiasis)
Inves
  • Eosinophilia
  • Terminal urine for S. haematobium eggs; serology; stool O,C,P; rectal snips
Mng
  • Antiparasitic therapy after confirming ova (see local guidance)
Special
  • Katayama fever (urticarial rash) + terminal haematuria point to S. haematobium
physiology · background · low-yield
Other
  • Physical examination is often unremarkable
65

Malaria

C/P
  • Plasmodium protozoa via female Anopheles mosquito; P. falciparum = worst prognosis
  • Paroxysms of high fever, rigors, profuse sweating; headache, myalgia, back pain, splenomegaly
  • Severe (falciparum) — cerebral malaria (coma, convulsions), severe anaemia, DIC, blackwater fever (haemoglobinuria), hypoglycaemia, lactic acidosis, renal failure (ATN), algid malaria (circulatory collapse), pulmonary oedema/ARDS
  • Markers of severity — hyperpyrexia, hyperparasitaemia, jaundice, prostration (extreme weakness), impaired but rousable consciousness
  • Cerebral malaria — unrousable coma, convulsions, gaze abnormalities, neck stiffness & rigidity (must exclude other causes)
Inves
  • Thick + thin blood films ×3 (thick for low parasitaemia)
  • Rapid dipstick — HRP2 (Pf) + pLDH antigens; parasitaemia % guides severity
Mng
  • Non-falciparum — chloroquine 600 mg then 300 mg; primaquine 15 mg ×14 d for P. vivax/ovale (clears hypnozoites — check G6PD first)
  • Falciparum — quinine sulfate + doxycycline/clindamycin/pyrimethamine-sulfadoxine, OR artemether-lumefantrine / atovaquone-proguanil / mefloquine
  • Severe — IV quinine 10 mg/kg every 8 h (SE — cinchonism, deafness, arrhythmias) + supportive care
  • Uncomplicated (not vomiting, parasitaemia <2%, ambulant) — oral malarone 4 tabs/day ×3 d, or oral quinine 600 mg TDS until film negative then doxycycline 100 mg ×7 d; severe = vomiting / parasitaemia >2% / severity markers
Special
  • P. falciparum cytoadherence ("knobs") → sequestration → severe multi-organ disease
  • Hypnozoites (P. vivax/ovale) → relapse; recrudescence (falciparum) from partial treatment; fever periodicity by species (→ Criteria tab)
physiology · background · low-yield
Mechanism
  • Life cycle — Anopheles injects sporozoites → mature to merozoites in hepatocytes (1–2 wk); erythrocytic cycle merozoite→trophozoite→schizont→ruptured schizont (2–3 d) releases TNF + inflammatory cytokines driving fever paroxysms
  • Haemolytic anaemia from destruction of parasitised and non-parasitised RBCs + dyserythropoiesis; blackwater fever = intravascular haemolysis usually triggered by oxidant drugs
Other
  • DDx — meningitis, typhoid, septicaemia, influenza, dengue, hepatitis, leptospirosis, relapsing fever, viral encephalitis, trypanosomiasis
Epidemiology/Risk
  • Severe malaria usually in non-immune individuals and children in endemic areas
Background
  • Prevention — cover exposed skin, insecticide-treated bed nets, insect repellents; a single infection confers no lasting immunity (reinfection common in endemic areas)
  • Supportive therapy — paracetamol / tepid sponging, anti-emetics, IV fluid rehydration, vital-sign monitoring, ICU if needed
Microbiology
  • Rapid dipstick uses monoclonal Abs vs Pf HRP2 & pLDH antigens (~90% sensitivity/specificity for falciparum); a negative film does not exclude disease (sequestration)

Arboviruses & Viral Haemorrhagic Fevers

11 entries
66

VHF & Arbovirus — Overview

C/P
  • Arbovirus = arthropod-borne zoonotic viruses (>385); vectors — Culex, Aedes, Anopheles + ticks; generally mild, short incubation (<10 d)
  • Pyrexia, conjunctival suffusion, rash, retro-orbital pain, myalgia, arthralgia; biphasic illness
  • VHF — mild/no symptoms in 80%, severe multi-system in 20%; humans not the natural reservoir; endemic — Lassa, Marburg, Ebola, Congo-Crimean (yellow fever + dengue less severe)
  • Severe VHF — oedema of head and neck, encephalopathy, coagulopathy
  • VHF incubation 2–21 days, insidious onset; infectious once clinically symptomatic
Inves
  • Virus (culture/PCR), antigen (ELISA), antibody; leukopenia, thrombocytopenia, prolonged APTT
Mng
  • Supportive; isolation + full barrier protection (side room, gown/gloves/mask/eyes, space suit)
Special
  • Haemorrhage — increased vascular permeability, capillary fragility, consumptive coagulopathy (endothelial + platelet dysfunction)
  • Not airborne but may be transmitted by aerosols
physiology · background · low-yield
Mechanism
  • Severe arbovirus encephalitis results from cerebral invasion by the virus
  • VHF spread via infected body fluids — blood, saliva, vomitus, stools, genital secretions, possibly sweat; cross-infection via needles
Background
  • Average duration of fever in VHF ≈ 16 days
67

Yellow Fever

C/P
  • Flaviviridae ssRNA; Aedes aegypti (urban), sylvatic cycle (monkeys); incubation 3–6 d; mortality up to 40%
  • Phases — acute (fever 39–40 °C, flushed face, conjunctival suffusion, retrobulbar pain, myalgia; Faget's sign from day 2) → remission → toxic (jaundice, hepatomegaly, ecchymosis, bleeding gums, haematemesis/melena)
  • Toxic-phase multi-organ failure — myocardial fibre damage → arrhythmia; renal tubular damage → renal failure
  • Terminal phase — delirium → stupor → coma
Inves
  • Virus isolation (first 3 days), PCR; impaired LFTs, thrombocytopenia, coagulation defects, leukopenia with relative neutropenia
  • Councilman bodies in liver
Mng
  • Supportive (rest, fluids, bed rest under mosquito nets); acetaminophen; avoid NSAIDs / aspirin / ibuprofen (bleeding)
  • Live attenuated 17D vaccine (single SC); valid 10 y (protection likely lifelong); CI <9 months, immunosuppressed, severe egg/ingredient allergy
Special
  • Faget's sign (fever + relative bradycardia) · Councilman bodies (liver) · haematemesis + melena in the toxic phase
  • "Coffee-ground" vomit from gastric-mucosa erosion in the toxic phase
physiology · background · low-yield
Epidemiology/Risk
  • Three transmission cycles — sylvatic (monkeys; Ae. africanus in Africa, Haemagogus/Sabethes in S. America), urban (Ae. aegypti), intermediate (Africa only; semi-domestic Ae. furcifer/simpsoni)
Microbiology
  • Serodiagnosis limited by cross-reactivity with other flaviviruses in endemic areas
Other
  • Transaminases rise 48–72 h after initial symptoms
  • Vaccine in pregnancy — at the discretion of the provider
Mechanism
  • Terminal coma from cerebral oedema, microscopic perivascular haemorrhage, uraemia, haemorrhagic shock
68

Dengue Fever

C/P
  • Flavivirus, 4 serotypes; Aedes aegypti (+ albopictus); incubation 5–6 d; "break-bone fever"
  • Abrupt fever, headache, retro-orbital pain (worse on eye movement), severe backache/bony pain; facial flushing, conjunctival suffusion, lymphadenopathy, petechiae/rash; saddleback (biphasic) fever
  • DHF/DSS — after 2nd infection with a different serotype → capillary leak, thrombocytopenia, hypotension, shock/haemorrhage; mortality up to 44%
Inves
  • Serology / PCR; leucopenia + thrombocytopenia; DHF — depressed complement + DIC
  • Course — febrile (d1–3) → critical (d4–6: platelet nadir, haematocrit peak) → recovery (d7–10, fluid overload risk)
  • Classic dengue — clotting normal despite thrombocytopenia
Mng
  • Supportive with analgesics + adequate fluid replacement; corticosteroids of no benefit; no effective vaccine yet
Special
  • Sequential infection with a different serotype predisposes to DHF; saddleback fever curve
physiology · background · low-yield
Epidemiology/Risk
  • Most common arthropod-borne viral infection in humans
  • Mosquito nets not very effective — Aedes bites in the daytime
Exam technique
  • No neck stiffness or photophobia (helps exclude meningitis)
Background
  • Convalescence phase — severe fatigue, feeling of being unwell and depression lasting several weeks
69

Congo-Crimean Haemorrhagic Fever

C/P
  • Bunyaviridae; mainly Asia + Africa; hosts = cattle + hares; tick vector; incubation 3–6 d
  • Influenza-like illness with fever + haemorrhagic manifestations; mortality 10–50%
Inves
  • PCR / serology (barrier-nursed VHF workup)
Mng
  • Supportive + strict isolation
Special
  • Tick-borne bunyavirus — the one VHF with a tick (not mosquito) vector
70

Rift Valley Fever

C/P
  • Livestock disease (sheep, goats, camels, cattle); southern + Eastern Africa; vectors Culex pipiens + Aedes caballus; also bite of infected animal / raw animal products
  • Incubation 3–6 d, biphasic; mild (fever, weakness, back pain, dizziness); severe — retinopathy, meningoencephalitis, haemorrhage, hepatic necrosis; mortality ~50% in severe forms
Inves
  • Serology / PCR
Mng
  • Supportive; animal vaccination (cattle); avoid raw animal tissues/fluids, cook meat/milk
Special
  • No documented person-to-person transmission; prevention centres on vaccinating livestock
71

Lassa Fever

C/P
  • Arenavirus; rat reservoir; via food contaminated by rat urine/saliva; person-to-person via body fluids
  • Only 10–30% symptomatic; incubation 7–18 d, insidious; fever, myalgia, severe backache, sore throat/pharyngitis/lymphadenopathy (>50%), maculopapular rash
  • Severe — epistaxis, GI bleeding, irreversible hypovolaemic shock; mortality 15–20% (hospitalised)
Inves
  • Serial serology + RT-PCR (throat swab, serum, urine)
Mng
  • Supportive + strict isolation
Special
  • Rat-borne arenavirus; death from irreversible hypovolaemic shock
72

West Nile Virus

C/P
  • Culex mosquitoes; wild birds = reservoir; humans/horses = accidental hosts
  • ~1 in 5 develop fever, body aches, arthralgia, vomiting, rash, eye pain
  • Severe neuroinvasive disease — encephalitis, neck stiffness, disorientation, muscle weakness, paralysis
Inves
  • Serology / PCR
Mng
  • Supportive; prevent mosquito bites (long sleeves/trousers)
Special
  • The arbovirus with a Culex (not Aedes) vector + prominent neuroinvasive disease
73

Chikungunya

C/P
  • Aedes aegypti + albopictus; fever, headache, maculopapular rash, myalgia, migratory polyarthritis, encephalitis
  • >20% still have recurrent joint pains after 1 year; mortality ~0.1%; elderly/very young most vulnerable
Inves
  • Serology / PCR
Mng
  • NSAIDs for joint pain; virus-like-particle vaccine in clinical trial
Special
  • Intense, long-lasting migratory polyarthritis is the signature
physiology · background · low-yield
Mechanism
  • Neurological complications arise from a viral strain with mutations conferring higher neurovirulence
74

Ebola Virus Disease

C/P
  • Natural host = fruit bats; human-to-human spread; 5 species; fatality 25–90% (avg ~50%)
  • Acute — severe headache, myalgia, vomiting, high fever, prostration, sore throat; day 5 maculopapular facial rash + profuse GI symptoms; day 7–16 internal + external bleeding
  • Exam signs — hepatosplenomegaly, facial oedema, red eyes, rash
Inves
  • PCR / antigen (ELISA) — great care handling specimens
Mng
  • Supportive; ribavirin in the first week; strict isolation (flexible-film isolator)
Special
  • Fruit-bat reservoir; haemorrhagic phase day 7–16
  • Prominent/characteristic chest pain, dry cough and hiccups
75

Zika Virus

C/P
  • Flavivirus (closely related to dengue); Aedes mosquitoes; usually unremarkable / self-limiting
  • Fever, myalgia, eye pain, prostration, maculopapular rash
  • Microcephaly in infants (congenital, Zika RNA in brain tissue); Guillain-Barré with epidemics
Inves
  • Serology — complicated by cross-reactivity with dengue
Mng
  • Supportive
Special
  • Congenital microcephaly + Guillain-Barré association define its significance
76

Hantavirus

C/P
  • Enzootic viruses of wild rodents; spread by aerosolised excreta (NOT by insect vectors)
  • Korean haemorrhagic fever (HFRS); mortality 5–10%; phases — fever → shock + haemorrhage → oliguric
  • Also acute respiratory distress after inhaling aerosolised rodent faeces
Inves
  • ELISA for specific antibodies
Mng
  • Supportive; avoid aerosolising rodent droppings, wear a mask when cleaning infested areas
Special
  • No insect vector — transmission is by inhaled rodent-excreta aerosols

Definitions & Diagnostic Criteria

3 entries
1

Fever & FUO — Definitions & Categories

Definition of Fever

  • Exceeds normal daily variation + raised hypothalamic set point
  • >37.2 °C before noon · >37.7 °C after noon

Classic FUO

  • >38.3 °C (101 °F) on several occasions · >3 weeks' duration · no diagnosis despite 1 week inpatient investigation OR 3 outpatient visits

Four Categories

CategoryTemperatureSetting / minimum workup
Classic>38.3 °C several occasions>3 wk; 3 outpatient visits OR 3 days inpatient OR 1 wk invasive ambulatory workup
Nosocomial>38.3 °C several occasionsHospitalised, not incubating on admission; 3 days investigation incl. 2 days culture incubation
Neutropenic>38.3 °C several occasionsNeutrophils <500/µL (or falling); ≥2 days culture incubation
HIV-associated>38.3 °C several occasions>4 wk outpatient OR >3 days inpatient; 3 days workup incl. 2 days cultures

Causes (developed world)

  • Noninfectious inflammatory disorders dominate — then infection, neoplasm (lymphoma, leukaemia), other (drug fever, factitious, recurrent PE)
2

CSF Findings in Meningitis

ParameterNormalBacterialViralFungalTubercular
Opening pressure<20 cmElevatedUsually normalVariableVariable
WBC / mm³<5≥1000<100VariableVariable
Predominant cell—PMNLymphocytesLymphocytesLymphocytes
Protein<0.5 g/LMild–marked ↑ (>1)Normal–elevatedElevatedElevated
CSF : serum glucose<66%LowUsually normalLowLow

LDH is raised in bacterial meningitis but not viral — a useful discriminator. Colour: bacterial turbid, viral clear.

6

Neutropenia & Febrile Neutropenia — Definitions

Neutropenia Thresholds

  • ANC <500/µL — increased risk of serious infection
  • ANC <100/µL — severe neutropenia
  • Duration + severity correlate with infection incidence/severity
  • ANC = WBC × (% neutrophils + % bands)

Febrile Neutropenia

  • >38.3 °C (101 °F) single reading OR >38 °C (100.5 °F) sustained >1 hour
  • High-risk (ASCO/IDSA) — <100 neutrophils/µL for >7 days

Empiric Therapy

  • Start antibiotics immediately — monotherapy: cefepime, meropenem, imipenem-cilastatin, or piperacillin-tazobactam
  • Add aminoglycoside if unstable/septic; add vancomycin if MRSA or Corynebacterium suspected

Severity & Risk Classifications

4 entries
3

HIV — CD4 Count & Opportunistic-Infection Risk

CD4 (cells/µL)Typical infections / conditions
>500No increased risk
200–500S. pneumoniae / TB · oral candida · Kaposi sarcoma · VZV / HSV · molluscum
100–200PCP (Pneumocystis) · JCV (PML) · histoplasmosis · coccidioidomycosis
50–100Toxoplasmosis · cryptosporidiosis · cryptococcus · CMV
<50Mycobacterium avium complex (MAC); tissue-invasive CMV

Toxoplasma reactivation risk rises <100; CMV retinitis typically CD4 ≈10. General OI predisposition once CD4 <50/µL.

4

WHO Severe Malaria — Markers of Severity

Organ-Specific Complications (P. falciparum)

  • Cerebral malaria — unrousable coma, convulsions, gaze abnormalities, neck stiffness/rigidity
  • Severe anaemia — destruction of parasitised + non-parasitised RBCs + dyserythropoiesis
  • DIC / haemorrhage / thrombocytopenia; GI bleeding
  • Blackwater fever — haemoglobinuria from intravascular haemolysis (often oxidant-drug triggered)
  • Hypoglycaemia — glycogen depletion + parasite glucose use
  • Lactic acidosis — tissue ischaemia → anaerobic glycolysis
  • Renal failure — rising creatinine + oliguria (acute tubular necrosis)
  • Algid malaria — circulatory collapse (± complicating sepsis)
  • Pulmonary oedema / ARDS — high mortality (± fluid overload)

Other Markers

  • Hyperpyrexia · hyperparasitaemia · jaundice · prostration · impaired but rousable consciousness
5

Dengue — Clinical Course & Severity

Course of Illness

PhaseDaysClinical / Lab
Febrile1–3Dehydration; platelet count drops; viraemia
Critical4–6Shock / bleeding, organ impairment; platelet nadir, haematocrit peak; IgM/IgG begin to rise
Recovery7–10Reabsorption / fluid-overload risk; platelet rises, haematocrit normalises; IgM/IgG high

Dengue Haemorrhagic Fever / Shock Syndrome

  • Requires ≥2 sequential infections with different serotypes
  • Capillary leak syndrome · thrombocytopenia · hypotension · shock + haemorrhage; mortality up to 44%
8

Cutaneous Eruptions — EM / SJS / TEN Spectrum

TypeLesion / BSADistributionMucosalSystemic→ TEN?Precipitants
EM minorTypical targetExtremitiesAbsent/mildAbsentNoHSV
EM majorTypical targetExtremities, faceSevereFever/arthralgiaNoHSV, Mycoplasma
SJSAtypical targets, <10% BSATrunk, face (+)SevereUsually presentPossibleDrugs
SJS/TEN overlap10–30% detachmentTrunk, face, neck (++)SevereAlwaysLikelyDrugs
TEN>30% detachmentDistal limbs, trunk, face, neck (+++)Severe (resp + GI)Always (+ nephritis)—Drugs

Drugs most incriminated in SJS/TEN — NSAIDs, antibiotics, antiepileptics. EM does not progress to TEN. SJS/TEN = Type IV hypersensitivity.

Microbiology & Classifications

6 entries
7

Immunodeficiency Categories & Associated Pathogens

DefectCausesAssociated pathogens
Humoral (B cells, antibodies)Myeloma, CLL, AIDSS. pneumoniae, H. influenzae, Mycoplasma, Campylobacter, Giardia, Enterovirus
T cellPrimary immunodeficiency (inherited); HIV, lymphoma, steroidsIntracellular (virus, TB, protozoa); fungal
NeutropeniaChemotherapy, BMTGram-negatives, Candida, Aspergillus, gut/skin flora
ComplementInherited/acquiredS. pneumoniae, Neisseria
AspleniaSplenectomy, trauma, sickle cellS. pneumoniae, H. influenzae, N. meningitidis, Plasmodium
9

Herpesvirus Family Classification

SubfamilyVirus (HHV)Major diseases
AlphaHSV-1 (HHV1)Cold sores, encephalitis, erythema multiforme
HSV-2 (HHV2)Genital infection, erythema multiforme
VZV (HHV3)Chickenpox, zoster
BetaCMV (HHV5)Hearing loss, retinitis
HHV6BExanthem subitum, febrile fits
HHV7Exanthem subitum, febrile fits
GammaEBV (HHV4)Glandular fever, Burkitt's lymphoma
KSHV (HHV8)Kaposi's sarcoma
10

Antimicrobial Mechanisms of Action

TargetDrug classes
Cell-wall synthesisPenicillins, cephalosporins, monobactams, carbapenems, glycopeptides, cycloserine, bacitracin
Cell membranePolymyxins
Folic-acid metabolismTrimethoprim, sulphonamides (block DHFA / THFA)
DNA gyraseQuinolones
DNA-directed RNA polymeraseRifampicin
Protein synthesis — 50SMacrolides, chloramphenicol, lincosamides
Protein synthesis — 30STetracyclines, aminoglycosides, spectinomycin
Protein synthesis — tRNAMupirocin
11

Malaria — Species Comparison

SpeciesFever cycleClinical nameKey feature
P. falciparumVariable (48 or 24 h)Malignant tertianWorst prognosis; cytoadherence; recrudescence from partial Rx
P. vivax48 hTertianRelapse from hypnozoites → primaquine (check G6PD)
P. ovale48 hTertianRelapse from hypnozoites → primaquine
P. malariae72 hQuartanLongest cycle
P. knowlesi24 h—Shortest cycle

Relapse (vivax/ovale — dormant hypnozoites) vs recrudescence (falciparum — incomplete treatment) vs reinfection.

14

Vaccine Classification

TypeExamples
Live — naturalVaccinia (smallpox)
Live — attenuatedBCG, MMR, OPV (Sabin), varicella, yellow fever
Killed — wholeIPV (Salk), rabies, hepatitis A
Killed — subunitHep B (recombinant), influenza, 23-valent pneumococcal polysaccharide, B. pertussis
Killed — conjugate7-valent pneumococcal, Hib, MenC (protein-conjugated → works <2 y)
ToxoidTetanus (inactivated toxin — formaldehyde / genetic mutation)

Live CI in immunosuppression + pregnancy; killed safe in immunocompromised but need boosters + cause more local reactions.

17

Other Antimicrobials (lecturer self-study list)

The Antimicrobials lecture flags these as "others you need to know something about" — go through the same scheme (spectrum · clinical use · PK · side effects) in less detail for each.

AgentClass / targetKey use in this module
TrimethoprimFolate synthesis inhibitorUTI; as co-trimoxazole for PCP + toxoplasmosis prophylaxis/treatment
Chloramphenicol50S protein synthesisReserved — bacterial meningitis in penicillin/cephalosporin anaphylaxis
MetronidazoleAnaerobes + protozoaBrain abscess (anaerobes), C. difficile colitis, amoebic liver abscess
Clindamycin50S; Gram-positive + anaerobesS. aureus / Group A Strep, malaria adjunct
DoxycyclineTetracycline (30S)Tick typhus, malaria (treatment + prophylaxis), atypicals
RifampicinDNA-directed RNA polymeraseAnti-TB; meningococcal + Hib contact prophylaxis
Fusidic acidProtein synthesisAnti-staphylococcal (skin/bone) — combine to limit resistance
LinezolidOxazolidinoneMRSA / resistant Gram-positives
Nitrofurantoin—Lower urinary tract infection

Schedules & Protocols

4 entries
12

Egyptian Childhood Vaccination Schedule

VaccineSchedule
BCGBirth
OPVBirth, 2, 4, 6, 9, 18 months
DTwP2, 4, 6, 18 months
DTwP-Hep / Hep B2, 4, 6 months
MMR12, 18 months
MenAC3, 6, 12, 15 years
13

UK Childhood Vaccination Schedule

AgeVaccines
2 monthsDTaP/IPV/Hib (5-in-1) + Pneumococcal
3 monthsDTaP/IPV/Hib + MenC
4 monthsDTaP/IPV/Hib + MenC + Pneumococcal
12 monthsMenC + Hib
13 monthsPneumococcal + MMR (1st)
3–5 yearsDTaP/IPV + Hib and MMR (2nd)
13–18 yearsTd + IPV (low-dose "little d")

5-in-1 = diphtheria toxoid + tetanus toxoid + acellular pertussis + IPV + Hib conjugate. HPV — all boys + girls from 12–13 (2 doses; 3 doses if started >15 y).

15

Stewardship — Start Smart Then Focus

Start Smart

  • Do NOT start antibiotics without clinical evidence of bacterial infection
  • Take a thorough drug-allergy history
  • Initiate prompt effective treatment — within 1 hour for severe sepsis
  • Comply with local antimicrobial guidance
  • Document clinical indication, dose + route, and a review/stop date
  • Obtain cultures before commencing therapy where possible

Then Focus (review at 48–72 h)

  • Check microbiology → decision: STOP · IV-to-oral switch · change antibiotic · continue · OPAT (Outpatient Parenteral Antibiotic Therapy)
  • Document the decision, next review date + stop date
16

Hartford Nomogram — Aminoglycoside Dosing

Dosing & Monitoring

  • Single daily dose 5–7 mg/kg (7 mg/kg at RFH)
  • Take one level 6–14 h after the dose
  • Plot concentration (y-axis, mg/L) vs time from infusion start to sample (x-axis, hours)
  • Zone read-off gives the dosing interval — Q24h · Q36h · Q48h
18

Antimicrobial Classes — Spectrum, Clinical Use & Side Effects

Companion to Antimicrobial Mechanisms of Action (targets) — this is the clinical dimension the lecture drills: for each group think spectrum · clinical use · side effects. Before starting any agent: no antimicrobials for viral infection; weigh allergy, renal/liver impairment, severity, immunocompromise, pregnancy/breastfeeding/OCP; take cultures first; consult local policy; set dose, route & duration.

Class (examples)SpectrumClinical useKey side effects / notes
Beta-lactams — narrow: penicillin, amoxicillin, flucloxacillin; broad: co-amoxiclav, piperacillin-tazobactam, cefuroxime/cefotaxime/ceftriaxone, meropenemGram+ good (resistance an issue); Gram− & anaerobe good for broader-spectrum agents; broadest (pip-taz, meropenem) cover resistant Gram−; no mycobacteriaCommonest & most important group; respiratory/IE, skin-soft-tissue-bone-joint, UT/GU, meningitis (cross BBB when meninges inflamed); often in combinationsRash/hypersensitivity (1–10%), anaphylaxis (~0.05%); antibiotic-associated diarrhoea/colitis (esp. cephalosporins & broad-spectrum); safe in pregnancy
Glycopeptides — vancomycin, teicoplaninGram+ only (incl. MRSA, enterococci); none for Gram−, anaerobes, mycobacteria, atypicalsMRSA & enterococcal infection (skin/joint/pneumonia/IE); when resistance or penicillin anaphylaxis is a problem; oral vancomycin for C. difficile colitis (stays in gut)Nephrotoxic & ototoxic in toxic amounts — monitor levels (vanco > teico); red person (red man) syndrome if infused too fast → give slowly
Macrolides (“-thromycins”) — erythromycin, clarithromycin, azithromycinGram+ good (staph resistance a problem); atypicals good (Chlamydia, Legionella, Mycoplasma); respiratory Gram− (H. influenzae, M. cat); some mycobacteria (clarithromycin); azithromycin for enteric feverAlternative to beta-lactams for respiratory & skin/soft-tissue infection (penicillin allergy); atypical pneumonia; azithromycin for ChlamydiaGI upset (marked with erythromycin, less with others); hepatic impairment a contraindication with azithromycin
Aminoglycosides — gentamicin, amikacin, streptomycinGram− & Pseudomonas good; lack intrinsic anti-streptococcal activity but synergise with penicillins; poor for anaerobes & intracellular pathogens; streptomycin has some anti-mycobacterial activityEmpirical sepsis with a beta-lactam when Gram− source likely (urinary/biliary/respiratory/GI); synergy in IE; not used as monotherapy (except ear/eye drops)Nephrotoxic & ototoxic at high levels — monitor (Hartford nomogram); caution with diuretics; parenteral only (poorly absorbed orally)
Quinolones — ciprofloxacin, levofloxacin, moxifloxacinGram+ poor (but moxi/levo good for S. pneumoniae); Gram− good (moxi has no anti-Pseudomonas activity); intracellular good (enteric fever, Legionella); moxi most anti-mycobacterialEmpirical when Gram− likely & patient penicillin-allergic; UTI, GI, respiratory (if pneumococci not involved); moxifloxacin for LRTI incl. mycobacterialLowers seizure threshold; tendon damage; relative CI in children (joint effects in immature animals)

Beta-lactam sub-agents worth naming

  • Flucloxacillin — penicillinase-resistant; for Staphylococcus aureus (impetigo, cellulitis, folliculitis, septic arthritis, osteomyelitis, pneumonia, IE)
  • Co-amoxiclav (Augmentin) — amoxicillin + clavulanic acid (a beta-lactamase inhibitor covering the enzymes of S. aureus, E. coli, H. influenzae); used when broad cover needed (e.g. GAS + S. aureus together)

TB — first-line (RIPE, used in combination)

  • Rifampicin · Isoniazid · Pyrazinamide · Ethambutol

Antifungals — three main classes

  • Azoles (fluconazole, itraconazole) — inhibit ergosterol synthesis in the fungal cell membrane
  • Polyenes (amphotericin) — bind ergosterol → membrane pores → leakage and cell death
  • Echinocandins (caspofungin) — inhibit fungal cell-wall glucan synthesis

Prophylaxis — 5 common indications

  • Prevent secondary cases of N. meningitidis / H. influenzae meningitis (contacts)
  • Prevent pneumococcal infection in asplenia / hyposplenism
  • Prevent TB in close contacts
  • Surgical prophylaxis
  • Prevent recurrence of rheumatic fever