|  Help  |  About  |  Contact Us

Publication : Arginase-1 Is Required for Macrophage-Mediated Renal Tubule Regeneration.

First Author  Shin NS Year  2022
Journal  J Am Soc Nephrol Volume  33
Issue  6 Pages  1077-1086
PubMed ID  35577558 Mgi Jnum  J:360470
Mgi Id  MGI:7797597 Doi  10.1681/ASN.2021121548
Citation  Shin NS, et al. (2022) Arginase-1 Is Required for Macrophage-Mediated Renal Tubule Regeneration. J Am Soc Nephrol 33(6):1077-1086
abstractText  BACKGROUND: After kidney injury, macrophages transition from initial proinflammatory activation to a proreparative phenotype characterized by expression of arginase-1 (Arg1), mannose receptor 1 (Mrc1), and macrophage scavenger receptor 1 (Msr1). The mechanism by which these alternatively activated macrophages promote repair is unknown. METHODS: We characterized the macrophage and renal responses after ischemia-reperfusion injury with contralateral nephrectomy in LysM-Cre;Arg1(fl/fl) mice and littermate controls and used in vitro coculture of macrophages and tubular cells to determine how macrophage-expressed arginase-1 promotes kidney repair. RESULTS: After ischemia-reperfusion injury with contralateral nephrectomy, Arg1-expressing macrophages were almost exclusively located in the outer stripe of the medulla adjacent to injured S3 tubule segments containing luminal debris or casts. Macrophage Arg1 expression was reduced by more than 90% in injured LysM-Cre;Arg1(fl/fl) mice, resulting in decreased mouse survival, decreased renal tubular cell proliferation and decreased renal repair compared with littermate controls. In vitro studies demonstrate that tubular cells exposed apically to dead cell debris secrete high levels of GM-CSF and induce reparative macrophage activation, with those macrophages in turn secreting Arg1-dependent factor(s) that directly stimulate tubular cell proliferation. CONCLUSIONS: GM-CSF-induced, proreparative macrophages express arginase-1, which is required for the S3 tubular cell proliferative response that promotes renal repair after ischemia-reperfusion injury.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

13 Bio Entities

Trail: Publication

0 Expression