生发中心
美罗华
记忆B细胞
免疫学
B细胞
CD20
CD19
抗体
幼稚B细胞
人口
B-1电池
抗原
医学
生物
免疫系统
T细胞
抗原提呈细胞
环境卫生
作者
Étienne Crickx,Pascal Chappert,Aurélien Sokal,Sandra Weller,Imane Azzaoui,Alexis Vandenberghe,G. Bonnard,G. Rossi,Tatiana Fadeev,Sébastien Storck,Jehane Fadlallah,Véronique Meignin,Étienne Rivière,Sylvain Audia,Bertrand Godeau,Marc Michel,Jean–Claude Weill,Claude‐Agnès Reynaud,Matthieu Mahévas
出处
期刊:Science Translational Medicine
[American Association for the Advancement of Science (AAAS)]
日期:2021-04-14
卷期号:13 (589)
被引量:35
标识
DOI:10.1126/scitranslmed.abc3961
摘要
Rituximab (RTX), an antibody targeting CD20, is widely used as a first-line therapeutic strategy in B cell-mediated autoimmune diseases. However, a large proportion of patients either do not respond to the treatment or relapse during B cell reconstitution. Here, we characterize the cellular basis responsible for disease relapse in secondary lymphoid organs in humans, taking advantage of the opportunity offered by therapeutic splenectomy in patients with relapsing immune thrombocytopenia. By analyzing the B and plasma cell immunoglobulin gene repertoire at bulk and antigen-specific single-cell level, we demonstrate that relapses are associated with two responses coexisting in germinal centers and involving preexisting mutated memory B cells that survived RTX treatment and naive B cells generated upon reconstitution of the B cell compartment. To identify distinctive characteristics of the memory B cells that escaped RTX-mediated depletion, we analyzed RTX refractory patients who did not respond to treatment at the time of B cell depletion. We identified, by single-cell RNA sequencing (scRNA-seq) analysis, a population of quiescent splenic memory B cells that present a unique, yet reversible, RTX-shaped phenotype characterized by down-modulation of B cell-specific factors and expression of prosurvival genes. Our results clearly demonstrate that these RTX-resistant autoreactive memory B cells reactivate as RTX is cleared and give rise to plasma cells and further germinal center reactions. Their continued surface expression of CD19 makes them efficient targets for current anti-CD19 therapies. This study thus identifies a pathogenic contributor to autoimmune diseases that can be targeted by available therapeutic agents.
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