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Elevated IL-10 is Linked With the Expansion of T-bethighCD21low B Cells in Patients With Common Variable
Victoria Cousin1,2,3,4, Anna Graumann1,2, Valerie Geiger1,2,3
1Department of Rheumatology and Clinical Immunology, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Freiburg, Germany.
Common variable immunodeficiency (CVID) is frequently complicated by autoimmune and inflammatory manifestations associated with profound immune dysregulation (CVIDc), including expansion of T-bethighCD21low B cells (CD21low B cells). Elevated serum IL-10 levels have repeatedly been reported in CVIDc, yet their relationship to CD21low B-cell differentiation remains unclear. In this study, we determined a significant correlation between increased serum IL-10 levels and frequency of circulating CD21low B cells, particularly marked in CVIDc patients. Transcriptomic and protein analyses identified multiple cellular sources of IL-10 in CVID, including monocytes, T cells, and a subset of CD21low B cells in peripheral blood and inflamed tissues. CD21low B cells expressed elevated levels of IL-10 receptor subunits and displayed intact IL-10-induced STAT3 signaling, indicating preserved responsiveness to IL-10. Functionally, IL-10 alone neither induced CD21low B-cell differentiation nor inhibited IFN-γ-driven polarization. However, in vitro differentiation assays showed that IL-10 can substitute for IL-21 during CD40L/T cell-dependent differentiation of CD21low-like B cells and promote their survival in vitro. These findings suggest that IL-10 may support the expansion and persistence of CD21low B cells at inflammatory sites. Collectively, our data identify IL-10 as a component of the inflammatory environment associated with CD21low B-cell expansion and suggest that IL-10 can functionally replace IL-21 during their differentiation and promote their survival in CVID-associated immune dysregulation.
Common variable immunodeficiency (CVID) is frequently complicated by autoimmune and inflammatory manifestations associated with profound immune dysregulation (CVIDc), including expansion of T-bethighCD21low B cells (CD21low B cells). Elevated serum IL-10 levels have repeatedly been reported in CVIDc, yet their relationship to CD21low B-cell differentiation remains unclear. In this study, we determined a significant correlation between increased serum IL-10 levels and frequency of circulating CD21low B cells, particularly marked in CVIDc patients. Transcriptomic and protein analyses identified multiple cellular sources of IL-10 in CVID, including monocytes, T cells, and a subset of CD21low B cells in peripheral blood and inflamed tissues. CD21low B cells expressed elevated levels of IL-10 receptor subunits and displayed intact IL-10-induced STAT3 signaling, indicating preserved responsiveness to IL-10. Functionally, IL-10 alone neither induced CD21low B-cell differentiation nor inhibited IFN-γ-driven polarization. However, in vitro differentiation assays showed that IL-10 can substitute for IL-21 during CD40L/T cell-dependent differentiation of CD21low-like B cells and promote their survival in vitro. These findings suggest that IL-10 may support the expansion and persistence of CD21low B cells at inflammatory sites. Collectively, our data identify IL-10 as a component of the inflammatory environment associated with CD21low B-cell expansion and suggest that IL-10 can functionally replace IL-21 during their differentiation and promote their survival in CVID-associated immune dysregulation.
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