The healing myocardium mobilizes a distinct B-cell subset through a CXCL13-CXCR5-dependent mechanism
Cardiovascular Research

Abstract
Recent studies have revealed that B cells and antibodies can influence inflammation and remodelling following a myocardial infarction (MI) and culminating in heart failure—but the mechanisms underlying these observations remain elusive. We therefore conducted in mice a deep phenotyping of the post-MI B-cell responses in infarcted hearts and mediastinal lymph nodes, which drain the myocardium. Thereby, we sought to dissect the mechanisms controlling B-cell mobilization and activity
Histological, flow cytometry, and single-cell RNA-sequencing (scRNA-seq) analyses revealed a rapid accumulation of diverse B-cell subsets in infarcted murine hearts, paralleled by mild clonal expansion of germinal centre B cells in the mediastinal lymph nodes. The repertoire of cardiac B cells was largely polyclonal and showed no sign of antigen-driven clonal expansion. Instead, it included a distinct subset exclusively found in the heart, herein termed ‘heart-associated B cells’ (hB) that expressed high levels of
Our study reveals that polyclonal B cells showing no sign of antigen-specificity readily infiltrate the heart after MI via the CXCL13-CXCR5 axis and contribute to local TGF-ß1 production. The local B-cell responses are paralleled by mild antigen-driven germinal centre reactions in the mediastinal lymph nodes that might ultimately lead to the production of specific antibodies.
Contributors

Margarete Heinrichs
Author

DiyaaElDin Ashour
Author

Johanna Siegel
Author

Lotte Büchner
Author

Katrin G Heinze
Author

Panagiota Arampatzi
Author

Antoine-Emmanuel Saliba
Author

Clement Cochain
Author

Ulrich Hofmann
Author
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