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Published on: April 21, 2015
BAFF-driven B cell hyperplasia underlies lung disease in common variable immunodeficiency
Paul J Maglione1, Gavin Gyimesi1, Montserrat Cols1
1Division of Clinical Immunology, Department of Medicine.
Insights
Common variable immunodeficiency (CVID) with lung disease involves B cell issues. Rituximab helps, but B cell-activating factor (BAFF) drives recurrence by preventing B cell death.
Area of Science:
- Immunology
- Pulmonology
- Cell Biology
Background:
- Common variable immunodeficiency (CVID) is a primary immunodeficiency.
- Interstitial lung disease (ILD) frequently complicates CVID, with unknown causes and limited therapies.
Purpose of the Study:
- To investigate the role of B cell dysregulation in CVID-ILD progression.
- To explore the efficacy of rituximab and identify mechanisms of disease recurrence.
Main Methods:
- Analysis of blood and lung samples from CVID-ILD patients.
- B cell culture, flow cytometry, ELISA, and histology.
- Treatment of 11 CVID-ILD patients with rituximab for 18 months.
Main Results:
- Serum IgM levels correlated with ILD progression and B cell follicle IgM production in the lungs.
- Rituximab treatment initially improved CVID-ILD but relapse occurred with rising IgM.
- Elevated B cell-activating factor (BAFF) and BAFF-producing monocytes were found in progressive ILD.
- BAFF promoted naive B cell survival by increasing anti-apoptotic Bcl-2 expression via BAFF-R.
Conclusions:
- CVID-ILD is driven by pulmonary B cell hyperplasia.
- Serum IgM elevation reflects this hyperplasia.
- Rituximab offers temporary relief, but elevated BAFF promotes B cell survival and disease recurrence.
Background:
Common variable immunodeficiency (CVID) is the most common symptomatic primary immunodeficiency and is frequently complicated by interstitial lung disease (ILD) for which etiology is unknown and therapy inadequate.
Methods:
Medical record review implicated B cell dysregulation in CVID ILD progression. This was further studied in blood and lung samples using culture, cytometry, ELISA, and histology. Eleven CVID ILD patients were treated with rituximab and followed for 18 months.
Results:
Serum IgM increased in conjunction with ILD progression, a finding that reflected the extent of IgM production within B cell follicles in lung parenchyma. Targeting these pulmonary B cell follicles with rituximab ameliorated CVID ILD, but disease recurred in association with IgM elevation. Searching for a stimulus of this pulmonary B cell hyperplasia, we found B cell-activating factor (BAFF) increased in blood and lungs of progressive and post-rituximab CVID ILD patients and detected elevation of BAFF-producing monocytes in progressive ILD. This elevated BAFF interacts with naive B cells, as they are the predominant subset in progressive CVID ILD, expressing BAFF receptor (BAFF-R) within pulmonary B cell follicles and blood to promote Bcl-2 expression. Antiapoptotic Bcl-2 was linked with exclusion of apoptosis from B cell follicles in CVID ILD and increased survival of naive CVID B cells cultured with BAFF.
Conclusion:
CVID ILD is driven by pulmonary B cell hyperplasia that is reflected by serum IgM elevation, ameliorated by rituximab, and bolstered by elevated BAFF-mediated apoptosis resistance via BAFF-R.
Funding:
NIH, Primary Immune Deficiency Treatment Consortium, and Rare Disease Foundation.
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