Burt Davina, Salvidio Gennaro, Tarabra Elena, Barutta Federica, Pinach Silvia, Dentelli Patrizia, Camussi Giovanni, Perin Paolo Cavallo, Gruden Gabriella
Diabetic Nephropathy Laboratory, Department of Internal Medicine, University of Turin, Turin, 10126, Italy.
Am J Pathol. 2007 Dec;171(6):1789-99. doi: 10.2353/ajpath.2007.070398. Epub 2007 Nov 30.
In crescentic glomerulonephritis (GN), monocyte chemoattractant protein-1 (MCP-1) is overexpressed within the glomeruli, and MCP-1 blockade has renoprotective effects. Adult podocytes are in a quiescent state, but acquisition of a migratory/proliferative phenotype has been described in crescentic GN and implicated in crescent formation. The cognate CC chemokine receptor 2 (CCR2), the MCP-1 receptor, is expressed by other cell types besides monocytes and has been implicated in both cell proliferation and migration. We investigated whether MCP-1 binding to CCR2 can induce a migratory/proliferative response in cultured podocytes. MCP-1 binding to CCR2 enhanced podocyte chemotaxis/haptotaxis in a concentration-dependent manner and had a modest effect on cell proliferation. Closure of a wounded podocyte monolayer was delayed by CCR2 blockade, and CCR2 was overexpressed at the wound edge, suggesting a role for CCR2 in driving podocyte migration. Immunohistochemical analysis of kidney biopsies from patients with crescentic GN demonstrated CCR2 expression in both podocytes and cellular crescents, confirming the clinical relevance of our in vitro findings. In conclusion, the MCP-1/CCR2 system is functionally active in podocytes and may be implicated in the migratory events triggered by podocyte injury in crescentic GN and other glomerular diseases.
在新月体性肾小球肾炎(GN)中,单核细胞趋化蛋白-1(MCP-1)在肾小球内过度表达,阻断MCP-1具有肾脏保护作用。成年足细胞处于静止状态,但在新月体性GN中已观察到其获得了迁移/增殖表型,并与新月体形成有关。同源CC趋化因子受体2(CCR2)是MCP-1的受体,除单核细胞外,其他细胞类型也表达该受体,并且其与细胞增殖和迁移均有关。我们研究了MCP-1与CCR2结合是否能在培养的足细胞中诱导迁移/增殖反应。MCP-1与CCR2结合以浓度依赖的方式增强了足细胞的趋化性/趋触性,并对细胞增殖有适度影响。CCR2阻断延迟了受伤足细胞单层的愈合,且CCR2在伤口边缘过度表达,提示CCR2在驱动足细胞迁移中发挥作用。对新月体性GN患者肾活检组织的免疫组化分析显示,CCR2在足细胞和细胞性新月体中均有表达,证实了我们体外研究结果的临床相关性。总之,MCP-1/CCR2系统在足细胞中具有功能活性,可能与新月体性GN和其他肾小球疾病中足细胞损伤引发的迁移事件有关。