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Bone marrow-derived cPLA2α contributes to renal fibrosis progression

机译:骨髓来源的cPLA2α促进肾纤维化进展

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摘要

The group IVA calcium-dependent cytosolic phospholipase A2 (cPLA2α) enzyme directs a complex “eicosanoid storm” that accompanies the tissue response to injury. cPLA2α and its downstream eicosanoid mediators are also implicated in the pathogenesis of fibrosis in many organs, including the kidney. We aimed to determine the role of cPLA2α in bone marrow-derived cells in a murine model of renal fibrosis, unilateral ureteral obstruction (UUO). WT C57BL/6J mice were irradiated and engrafted with donor bone marrow from either WT mice [WT-bone marrow transplant (BMT)] or mice deficient in cPLA2α (KO-BMT). After full engraftment, mice underwent UUO and kidneys were collected 3, 7, and 14 days after injury. Using picrosirius red, collagen-3, and smooth muscle α actin staining, we determined that renal fibrosis was significantly attenuated in KO-BMT animals as compared with WT-BMT animals. Lipidomic analysis of homogenized kidneys demonstrated a time-dependent upregulation of pro-inflammatory eicosanoids after UUO; KO-BMT animals had lower levels of many of these eicosanoids. KO-BMT animals also had fewer infiltrating pro-inflammatory CD45+CD11b+Ly6Chi macrophages and reduced message levels of pro-inflammatory cytokines. Our results indicate that cPLA2α and/or its downstream mediators, produced by bone marrow-derived cells, play a major role in eicosanoid production after renal injury and in renal fibrinogenesis.
机译:IVA组钙依赖性胞质磷脂酶A2(cPLA2α)酶指导复杂的“类花生酸风暴”,伴随组织对损伤的反应。 cPLA2α及其下游类花生酸介质也与包括肾脏在内的许多器官的纤维化发病机制有关。我们旨在确定cPLA2α在肾纤维化,单侧输尿管阻塞(UUO)小鼠模型中的骨髓来源细胞中的作用。辐照WT C57BL / 6J小鼠,并植入WT小鼠[WT-骨髓移植(BMT)]或缺乏cPLA2α的小鼠(KO-BMT)的供体骨髓。完全植入后,对小鼠进行UUO,并在受伤后第3、7和14天收集肾脏。使用picrosirius红,胶原3和平滑肌α肌动蛋白染色,我们确定与WT-BMT动物相比,KO-BMT动物的肾纤维化明显减弱。均质肾脏的血脂分析表明,UUO后促炎性类花生酸的时间依赖性上调。 KO-BMT动物中的许多类花生酸含量较低。 KO-BMT动物的浸润促炎性CD45 + CD11b + Ly6C 巨噬细胞也较少,促炎性细胞因子的信息水平降低。我们的结果表明,骨髓来源的细胞产生的cPLA2α和/或其下游介质在肾损伤后类花生酸的产生和肾纤维蛋白生成中起主要作用。

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