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Hypochlorite modified albumins promote cell death in the tubule interstitium in rats via mitochondrial damage in obstructive nephropathy and the protective effects of antioxidant peptides

机译:次氯酸盐改性蛋白质通过线粒体损伤在大鼠梗阻性肾病中促进细胞死亡,并在抗氧化剂肽的保护作用中促进大鼠的细胞死亡

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A major feature of the injury sustained by the kidney during obstructive nephropathy is a profound induction of apoptosis in the tubular epithelium. In this study, we explored the central roles of mitochondria and the mechanism of the protective effect of the mitochondrial targeted peptides in tubular cell apoptosis and interstitial fibrosis during obstructive nephropathy. Unilateral ureter obstruction (UUO) was performed on rats, and the animals were randomly assigned to intravenous treatment with normal saline, rat serum albumin (RSA), or HOCl-rat serum albumin (HOCl-RSA) in the presence or absence of SS-31. A sham-operation control group was set up by left ureteral dissociation but not ligation. Compared with the control group, UUO animals displayed fibrotic abnormalities, accompanied by increased expression of collagen-I, fibronectin, ?SMA protein and mRNA in the renal interstitium. They also displayed oxidative stress, as evidenced by increased levels of HOCl-alb, TBARS, and mitochondrial reactive oxygen species (ROS) and a decrease in MnSOD activity in the renal homogenate. Damage to mitochondrial structure and functions was observed, as evidenced by a decrease in the mitochondrial membrane potential (MMP), ATP production, mtDNA copy number alterations and release of cytochrome C (cyto C) from the mitochondria to the cytoplasm. These changes were accompanied by activation of caspase-3, caspase-7, caspase-9, and PARP-1 and increased apoptotic cells in the proximal tubules. HOCl-RSA challenge further exacerbated the above biological effects in UUO animals, but these effects were prevented by administration of SS-31. These data suggested that accumulation of HOCl-alb may promote tubular cell apoptosis and interstitial fibrosis, probably related to mitochondrial oxidative stress and damage, and that SS-31 might contribute to apoptotic pathway suppression via scavenging of ROS in the mitochondria. ?2018 Informa UK Limited, trading as Taylor & Francis Group.
机译:肾脏肾病期间肾脏损伤的主要特征是肾小管上皮细胞凋亡的深切诱导。在这项研究中,我们探讨了线粒体的中心作用以及线粒体靶向肽在阻塞性肾病中的线粒体靶向肽对管状细胞凋亡和间质纤维化的保护作用的机制。单侧输尿管阻塞(UUO)对大鼠进行,随机分配动物以常规盐水,大鼠血清白蛋白(RSA)或Hocl-RAT血清白蛋白(HOCl-RSA)随机分配给SS-的静脉治疗31。假手术对照组由左输尿管解离但未结扎。与对照组相比,UUO动物显示纤维化异常,伴随着胶原蛋白-i,纤连蛋白,β蛋白和mRNA在肾间隙中的表达增加。它们还展示氧化应激,如血清醇,TBAR和线粒体反应性氧物质(ROS)的增加和肾均质中的MNSOD活性的降低所证明。观察到对线粒体结构和功能的损伤,如线粒体膜电位(MMP),ATP生产,MTDNA拷贝数改变和从线粒体到细胞质的细胞色素C(CTO C)的释放所证明。这些变化伴随着Caspase-3,Caspase-7,Caspase-9和PARP-1的激活以及近端小管中的增加的凋亡细胞。 Hocl-RSA挑战进一步加剧了UUO动物的上述生物学效果,但通过施用SS-31,防止了这些效果。这些数据表明,Hocl-Alb的积累可以促进管状细胞凋亡和间质纤维化,可能与线粒体氧化应激和损伤有关,并且SS-31可以通过线粒体中的ROS扫描凋亡途径抑制。 ?2018年Informa UK Limited,贸易为泰勒和弗朗西斯集团。

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