[HTML][HTML] B lymphocyte–derived CCL7 augments neutrophil and monocyte recruitment, exacerbating acute kidney injury

A Inaba, ZK Tuong, AM Riding, RJ Mathews… - The Journal of …, 2020 - journals.aai.org
A Inaba, ZK Tuong, AM Riding, RJ Mathews, JL Martin, K Saeb-Parsy, MR Clatworthy
The Journal of Immunology, 2020journals.aai.org
Acute kidney injury (AKI) is a serious condition affecting one fifth of hospital inpatients. B
lymphocytes have immunological functions beyond Ab production and may produce
cytokines and chemokines that modulate inflammation. In this study, we investigated
leukocyte responses in a mouse model of AKI and observed an increase in circulating and
kidney B cells, particularly a B220 low subset, following AKI. We found that B cells produce
the chemokine CCL7, with the potential to facilitate neutrophil and monocyte recruitment to …
Abstract
Acute kidney injury (AKI) is a serious condition affecting one fifth of hospital inpatients. B lymphocytes have immunological functions beyond Ab production and may produce cytokines and chemokines that modulate inflammation. In this study, we investigated leukocyte responses in a mouse model of AKI and observed an increase in circulating and kidney B cells, particularly a B220 low subset, following AKI. We found that B cells produce the chemokine CCL7, with the potential to facilitate neutrophil and monocyte recruitment to the injured kidney. Siglec-G–deficient mice, which have increased numbers of B220 low innate B cells and a lower B cell activation threshold, had increased Ccl7 transcripts, increased neutrophil and monocyte numbers in the kidney, and more severe AKI. CCL7 blockade in mice reduced myeloid cell infiltration into the kidney and ameliorated AKI. In two independent cohorts of human patients with AKI, we observed significantly higher CCL7 transcripts compared with controls, and in a third cohort, we observed an increase in urinary CCL7 levels in AKI, supporting the clinical importance of this pathway. Together, our data suggest that B cells contribute to early sterile inflammation in AKI via the production of leukocyte-recruiting chemokines.
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