π Big Picture: Reading the Age of Onsetframework
- Immunodeficiencies can hit any arm of defense β innate (phagocytes, complement) or adaptive (B cells, T cells)
- Most present in infancy/early childhood, and the timing is a clue in itself
- Maternal IgG crosses the placenta and protects the newborn for the first several months
- Largely gone by ~6 months, fully gone by ~12β15 months
- A pure antibody defect often stays clinically silent until maternal IgG runs out
- A baby who gets sick before 6 months with severe infections (especially fungal/viral) points more toward a T-cell or combined defect, since T-cell immunity isn't covered by maternal antibody
- Many of these diseases are X-linked β skewed toward males
π§« Phagocyte Defectsinnate immunity
phagocyte engulfs microbeβ
respiratory burst (NADPH oxidase)β
superoxide β HβOββ
MPO converts to hypochloriteβ
microbial killing
| Disease | What's broken | Clinical signature |
|---|---|---|
| Chronic granulomatous disease | NADPH oxidase (any of its subunits) β no respiratory burst | Recurrent infection with catalase-positive organisms (they neutralize their own peroxide, and the phagocyte can't compensate) |
| Myeloperoxidase deficiency | Can't convert HβOβ to hypochlorite | Usually mild/asymptomatic β other killing pathways compensate |
| G6PD deficiency | Hexose monophosphate shunt can't regenerate NADPH | CGD-like infection pattern, plus hemolytic anemia |
| Leukocyte adhesion deficiency | Missing CD18 (shared chain of the Ξ²2-integrins LFA-1, Mac-1, gp150/95) | Neutrophils can't firmly adhere/migrate β no pus formation, delayed umbilical cord separation |
| Chediak-Higashi syndrome | LYST gene β abnormal lysosomal vesicle fusion/trafficking | Recurrent pyogenic infection, absent NK cytotoxicity, partial albinism (giant granules in melanocytes too) |
| Hyper-IgE syndrome (Job syndrome) | STAT3 pathway defect β impaired Th17 differentiation | Coarse facies, "cold" skin abscesses, recurrent pneumonia with pneumatocele formation, retained primary teeth, markedly elevated IgE |
Pattern to rememberAnything that cripples the neutrophil's killing machinery shows up as recurrent bacterial/fungal skin and organ infections rather than viral disease.
π ±οΈ Antibody (Humoral) Defectsadaptive immunity
- Shared theme: B cells fail somewhere along maturation or antibody production β recurrent infection with encapsulated/pyogenic organisms, usually once maternal IgG fades
| Disease | Defect | Key features | Treatment |
|---|---|---|---|
| Bruton (X-linked) agammaglobulinemia | BTK kinase defect β B cells arrest at the pre-B stage | All immunoglobulin isotypes low/absent, few or no circulating B cells; T-cell immunity intact | Regular IVIG replacement + antibiotics for infections |
| X-linked hyper-IgM syndrome | CD40 ligand missing on activated T cells β no class switching | High IgM only, other isotypes low; normal B- and T-cell counts; susceptible to encapsulated bacteria and opportunists | Antibiotics + immunoglobulin replacement |
| Selective IgA deficiency | Multiple genetic causes, most common primary immunodeficiency overall | Low IgA with normal IgG/IgM; recurrent sinopulmonary and GI infection; increased atopy | Antibiotics only β not immunoglobulin (anaphylaxis risk, covered earlier) |
| Common variable immunodeficiency | Heterogeneous group of B-cell maturation defects | Later onset (late teensβ20s); B cells present but antibody production falls over time; increased autoimmunity | Antibiotics Β± immunoglobulin depending on severity |
| Transient hypogammaglobulinemia of infancy | Just a delay in the infant's own IgG synthesis ramping up | Noticed around 5β6 months, resolves by 16β30 months; increased pyogenic infection in the interim | Usually supportive; gamma-globulin only if severe |
π§© Complement Pathway Defectsinnate immunity
- Early classical-pathway components (C1q, C1r, C1s, C4, C2)
- These normally help clear immune complexes
- Deficiency β immune-complex disease (lupus-like), plus more pyogenic infection
- C3 (the convergence point of all pathways)
- Most severe complement deficiency clinically
- Recurrent bacterial infection + immune-complex disease
- Terminal components (C5βC9 β membrane attack complex)
- MAC is specifically needed to lyse Neisseria
- Deficiency β recurrent meningococcal/gonococcal infection, otherwise fairly well
- C1 esterase inhibitor (regulatory protein, not a pathway component)
- Deficiency = hereditary angioedema
- Unchecked C1, C4, C2 activation β recurrent episodic mucosal/submucosal swelling without urticaria
Exam trapTerminal complement (C5-9) deficiency = the classic setup for recurrent Neisseria infection, not general pyogenic infection.
𧬠T-Cell & Combined Immunodeficienciesadaptive immunity
- T cells sit at the center of nearly every adaptive response β a T-cell defect ripples outward, so these tend to be more devastating and harder to pin down than an isolated B-cell defect
- Classic tell: opportunistic fungal/viral infection appearing very early in infancy, before maternal antibody has worn off
| Category | Disease | Molecular defect | Clinical picture |
|---|---|---|---|
| Selective T-cell defect | DiGeorge syndrome | 22q11 deletion β failed 3rd/4th pharyngeal pouch development β thymic hypoplasia | Cardiac defects, hypocalcemia (absent parathyroids), characteristic facies, thymic aplasia |
| Selective T-cell defect | MHC class I deficiency | TAP transporter failure β peptides can't load onto MHC-I | CD8+ T cells low, CD4+ normal; recurrent viral infection |
| Combined (partial) | Wiskott-Aldrich syndrome | WAS gene β defective actin cytoskeleton remodeling | Triad: eczema, thrombocytopenia, recurrent infection (poor response to polysaccharide antigen, low IgM, progressive loss of both B- and T-cell function) |
| Combined (partial) | Ataxia-telangiectasia | ATM kinase defect β impaired DNA-damage response | Cerebellar ataxia, ocular/skin telangiectasias, low IgA and IgE |
| Complete combined | SCID β X-linked | Common Ξ³-chain (shared by IL-2,-4,-7,-9,-15 receptors) defect | Very low lymphocytes, no response to mitogens, chronic diarrhea, mucocutaneous lesions, opportunistic fungal infection |
| Complete combined | SCID β ADA deficiency | Adenosine deaminase deficiency β toxic metabolite buildup in lymphocytes | Similar to X-linked SCID, plus neurologic involvement |
| Complete combined | SCID β RAG1/RAG2 mutation | Failure of V(D)J recombination | Essentially no mature B or T cells at all |
| Complete combined | Bare lymphocyte syndrome (MHC class II deficiency) | Transcription-factor defect β no MHC-II expression | CD4+ T cells deficient, hypogammaglobulinemia, no graft-vs-host disease (can't recognize foreign MHC-II) |
Why B-cell symptoms lag in these diseasesPassive maternal antibody still covers the humoral gap for the first few months, so the B-cell half of a combined defect often isn't apparent until later.
β High-Yield Pearlsexam focus
- Recurrent infection + no pus + delayed cord separation β leukocyte adhesion deficiency
- Recurrent infection + catalase-positive organisms β chronic granulomatous disease
- Partial albinism + giant granules + absent NK activity β Chediak-Higashi
- Coarse face + cold abscesses + sky-high IgE β hyper-IgE (Job) syndrome
- All isotypes low, no circulating B cells, boy, recurrent bacterial infection β Bruton agammaglobulinemia
- IgM sky-high, everything else low β hyper-IgM syndrome (CD40L defect)
- Low IgA + risk of anaphylaxis to blood products β selective IgA deficiency
- Recurrent Neisseria specifically β terminal complement (C5-9) deficiency
- Episodic swelling without hives, no response to antihistamines β C1 esterase inhibitor deficiency (hereditary angioedema)
- Cardiac defect + hypocalcemia + absent thymus in a newborn β DiGeorge syndrome
- Eczema + thrombocytopenia + infections in a boy β Wiskott-Aldrich syndrome
- Ataxia + telangiectasia + low IgA β ataxia-telangiectasia
- Profound infection, no lymphocytes, presents in early infancy β SCID