CCR2 Signaling Contributes to Ischemia-Reperfusion Injury in Kidney

CCR2型 缺血 单核细胞 内分泌学 再灌注损伤 医学 肾缺血 内科学 急性肾损伤 坏死 急性肾小管坏死 炎症 趋化因子 趋化因子受体
作者
Kengo Furuichi,Takashi Wada,Yasunori Iwata,Kiyoki Kitagawa,Ken-ichi Kobayashi,Hiroyuki Hashimoto,Yoshiro Ishiwata,Masahide Asano,Hui Wang,Kouji Matsushima,Motohiro Takeya,William A. Kuziel,Naofumi Mukaida,Hitoshi Yokoyama
出处
期刊:Journal of The American Society of Nephrology 卷期号:14 (10): 2503-2515 被引量:246
标识
DOI:10.1097/01.asn.0000089563.63641.a8
摘要

Examined were CCR2-deficient mice to clarify the contribution of macrophages via monocyte chemoattractant protein 1 (MCP-1 or CCL2)/CCR2 signaling to the pathogenesis of renal ischemia-reperfusion injury. Also evaluated was the therapeutic effects via the inhibition of MCP-1/CCR2 signaling with propagermanium (3-oxygermylpropionic acid polymer) and RS-504393. Renal artery and vein of the left kidney were occluded with a vascular clamp for 60 min. A large number of infiltrated cells and marked acute tubular necrosis in outer medulla after renal ischemia-reperfusion injury was observed. Ischemia-reperfusion induced the expression of MCP-1 mRNA and protein in injured kidneys, followed by CCR2-positive macrophages in interstitium in wild-type mice. The expression of MCP-1 was decreased in CCR2-deficient mice compared with wild-type mice. The number of interstitial infiltrated macrophages was markedly smaller in the CCR2-deficient mice after ischemia-reperfusion. CCR2-deficient mice decreased the number of interstitial inducible nitric oxide synthase-positive cells after ischemia-reperfusion. The area of tubular necrosis in CCR2-deficient mice was significantly lower than that of wild-type mice after ischemia-reperfusion. In addition, CCR2-deficient mice diminished KC, macrophage inflammatory protein 2, epithelial cell-derived neutrophil-activating peptide 78, and neutrophil-activating peptide 2 expression compared with wild-type mice accompanied with the reduction of interstitial granulocyte infiltration. Similarly, propagermanium and RS-504393 reduced the number of interstitial infiltrated cells and tubular necrosis up to 96 h after ischemia-reperfusion injury. These results revealed that MCP-1 via CCR2 signaling plays a key role in the pathogenesis of renal ischemia-reperfusion injury through infiltration and activation of macrophages, and it offers a therapeutic target for ischemia-reperfusion.
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