Literature DB >> 35404389

Monocytes transition to macrophages within the inflamed vasculature via monocyte CCR2 and endothelial TNFR2.

Vijayashree Mysore1, Suhail Tahir1, Kazuhiro Furuhashi1, Jatin Arora2,3,4, Florencia Rosetti5, Soumya Raychaudhuri2,3,4,6, Bruce H Horwitz7, Xavier Cullere1, Pascal Yazbeck1, Miroslav Sekulic8, Madeleine E Lemieux9, Tanya N Mayadas1.   

Abstract

Monocytes undergo phenotypic and functional changes in response to inflammatory cues, but the molecular signals that drive different monocyte states remain largely undefined. We show that monocytes acquire macrophage markers upon glomerulonephritis and may be derived from CCR2+CX3CR1+ double-positive monocytes, which are preferentially recruited, dwell within glomerular capillaries, and acquire proinflammatory characteristics in the nephritic kidney. Mechanistically, the transition to immature macrophages begins within the vasculature and relies on CCR2 in circulating cells and TNFR2 in parenchymal cells, findings that are recapitulated in vitro with monocytes cocultured with TNF-TNFR2-activated endothelial cells generating CCR2 ligands. Single-cell RNA sequencing of cocultures defines a CCR2-dependent monocyte differentiation path associated with the acquisition of immune effector functions and generation of CCR2 ligands. Immature macrophages are detected in the urine of lupus nephritis patients, and their frequency correlates with clinical disease. In conclusion, CCR2-dependent functional specialization of monocytes into macrophages begins within the TNF-TNFR2-activated vasculature and may establish a CCR2-based autocrine, feed-forward loop that amplifies renal inflammation.
© 2022 Mysore et al.

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Year:  2022        PMID: 35404389      PMCID: PMC9006314          DOI: 10.1084/jem.20210562

Source DB:  PubMed          Journal:  J Exp Med        ISSN: 0022-1007            Impact factor:   14.307


  99 in total

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