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Updated: Aug 8, 2026

Generation of Human CD40-activated B cells
Published on: October 17, 2009
B cell differentiation defects in common variable immunodeficiency are ameliorated after stimulation with anti-CD40
E M Eisenstein1, K Chua, W Strober
1Mucosal Immunity Section, National Institute of Allergy and Infectious Disease, Bethesda, MD 20892.
Insights
Common variable immunodeficiency (CVI) B cells show normal proliferation but impaired differentiation and immunoglobulin secretion. However, B cell function in CVI patients can be improved in culture, suggesting reversible B cell anergy.
Area of Science:
- Immunology
- Cell Biology
Background:
- Common variable immunodeficiency (CVI) is characterized by impaired antibody production.
- B cell differentiation and immunoglobulin (Ig) isotype switching are critical for adaptive immunity.
Purpose of the Study:
- To investigate the B cell differentiation and Ig secretion defects in CVI patients.
- To determine if CVI B cell abnormalities are reversible.
Main Methods:
- Flow cytometry to analyze B cell populations (sIgM+, sIgG+, sIgA+).
- In vitro stimulation assays using anti-CD40, IL-10, SAC, IL-2, and TGF-beta.
- Quantitative PCR to measure C mu, C gamma, and C alpha mRNA expression.
- Co-culture experiments with activated T cells.
Main Results:
- CVI B cells exhibit reduced sIgG+ and sIgA+ cells with increased sIgM+ cells, indicating an in vivo isotype switch defect.
- CVI B cells show impaired IgM, IgG, and IgA secretion upon stimulation, which is not rescued by additional cytokines.
- CVI B cells can recover normal or near-normal CH mRNA expression and Ig secretion after prolonged culture with anti-CD40 and IL-10, or restimulation with T cells.
Conclusions:
- B cell differentiation defects in CVI are multi-level and involve impaired isotype switching and Ig secretion.
- CVI B cell dysfunction appears to be a form of reversible B cell anergy.
- These findings suggest potential therapeutic strategies targeting B cell recovery in CVI.
Abstract:
In these studies we show that although purified B cells of patients with common variable immunodeficiency (CVI) have a normal capacity to proliferate, they manifest differentiation defects at multiple levels. Compared with controls, circulating CVI B cell populations contain reduced numbers of sIgG+ and sIgA+ cells with a commensurate increase in sIgM+ B cells, suggesting an in vivo defect in isotype switch. In addition, CVI B cells manifest Ig secretion defects on stimulation with either anti-CD40 and IL-10 or SAC and IL-2 and IL-10, which are of increasing severity for IgM, IgG, and IgA, respectively. These Ig secretion defects are not overcome by addition of a variety of cytokines, including TGF-beta, to anti-CD40-driven cultures. In further studies we show that despite the above abnormalities, CVI B cells are induced to express normal or near-normal levels of C mu, C gamma, and C alpha mRNA after 7 days of stimulation with anti-CD40 and IL-10. That this CH mRNA expression represents a recovery of CVI B cell differentiation is supported by studies of Ig secretion in which CVI B cells that are first stimulated for 7 days with anti-CD40 and IL-10 and then restimulated in coculture with activated normal allogeneic T cells and IL-10, secrete substantial levels of IgM and IgG and increased amounts of IgA. Overall, therefore, CVI B cell function can be significantly improved by maintenance in culture. These data suggest the abnormalities of B cell differentiation in CVI are reversible and that the defect is a form of B cell anergy.
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