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Selective polysaccharide antibody deficiency in familial DiGeorge syndrome
1Department of Medicine, Stanford University School of Medicine, CA.
Insights
Familial DiGeorge syndrome presents with immunodeficiency and pharyngeal pouch anomalies. Patients show impaired antibody responses to polysaccharides, suggesting a heritable defect in T cell subpopulations.
Area of Science:
- Genetics
- Immunology
- Pediatrics
Background:
- DiGeorge syndrome, often associated with velocardiofacial syndrome, is a complex genetic disorder.
- Familial cases highlight the heritable nature of DiGeorge syndrome and its associated anomalies.
Observation:
- A family with three children affected by DiGeorge syndrome was studied.
- Two siblings presented with pharyngeal pouch anomalies, immunodeficiency, and characteristic morphologic features.
Findings:
- Both siblings exhibited CD4+ T cell lymphopenia, defective recall T cell responses, and low IgM levels.
- Impaired IgG antibody responses to polysaccharide antigens (e.g., H. influenzae, S. pneumoniae) were observed, while responses to protein antigens remained intact.
- Successful treatment with intravenous gamma globulin was achieved.
Implications:
- The selective antibody deficiency suggests a heritable defect in regulatory anti-polysaccharide CD4+ T cell subpopulations.
- This case underscores the genetic basis and varied clinical presentations of DiGeorge syndrome.
- Understanding these specific immune defects can guide therapeutic strategies.
Abstract:
A family including three children with DiGeorge syndrome is described. One child died in the neonatal period from cardiac anomalies accompanying complete DiGeorge syndrome. The two surviving siblings shared a common set of pharyngeal pouch anomalies and immunodeficiency consistent with partial DiGeorge syndrome, and other morphologic anomalies characteristic of the velocardiofacial syndrome with which familial DiGeorge syndrome is associated (reviewed in reference 1). Both had normal karyotypes. Both presented with recurrent otitis media and sinopulmonary infections, CD4+ T cell lymphopenia, and defective DCH skin test responses to recall T cell antigens. Both had low serum IgM levels and IgG4 levels at the lower limits of normal. Immunization with bacterial polysaccharides resulted in impaired IgG antibody responses to the same set of antigens (H. influenzae polyribophosphate and S. pneumoniae capsular serotypes 9N and 14), while responses to protein antigens were intact. Both siblings were treated successfully with intravenous gamma globulin. The pattern of selective antibody deficiency in these patients with familial DiGeorge syndrome suggests a heritable lesion in certain regulatory antipolysaccharide CD4+ T cell subpopulations.
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