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罗沙司他(FG-4592)通过改善叶酸诱导的线粒体功能障碍促进肾损伤恢复。

Roxadustat (FG-4592) Facilitates Recovery From Renal Damage by Ameliorating Mitochondrial Dysfunction Induced by Folic Acid.

作者信息

Li Xue, Jiang Bo, Zou Yu, Zhang Jie, Fu Yuan-Yuan, Zhai Xiao-Yue

机构信息

Department of Histology and Embryology, Basic Medical College, China Medical University, Shenyang, China.

Department of Nephrology, Shengjing Hospital of China Medical University, Shenyang, China.

出版信息

Front Pharmacol. 2022 Feb 25;12:788977. doi: 10.3389/fphar.2021.788977. eCollection 2021.

Abstract

Incomplete recovery from acute kidney injury induced by folic acid is a major risk factor for progression to chronic kidney disease. Mitochondrial dysfunction has been considered a crucial contributor to maladaptive repair in acute kidney injury. Treatment with FG-4592, an inhibitor of hypoxia inducible factor prolyl-hydroxylase, is emerging as a new approach to attenuate renal damage; however, the underlying mechanism has not been fully elucidated. The current research demonstrated the protective effect of FG-4592 against renal dysfunction and histopathological damage on the 7th day after FA administration. FG-4592 accelerated tubular repair by promoting tubular cell regeneration, as indicated by increased proliferation of cell nuclear antigen-positive tubular cells, and facilitated structural integrity, as reflected by up-regulation of the epithelial inter-cellular tight junction molecule occludin-1 and the adherens junction molecule E-cadherin. Furthermore, FG-4592 ameliorated tubular functional recovery by restoring the function-related proteins aquaporin1, aquaporin2, and sodium chloride cotransporter. Specifically, FG-4592 pretreatment inhibited hypoxia inducible factor-1α activation on the 7th day after folic acid injection, which ameliorated ultrastructural abnormalities, promoted ATP production, and attenuated excessive reactive oxygen species production both in renal tissue and mitochondria. This was mainly mediated by balancing of mitochondrial dynamics, as indicated by down-regulation of mitochondrial fission 1 and dynamin-related protein 1 as well as up-regulation of mitofusin 1 and optic atrophy 1. Moreover, FG-4592 pretreatment attenuated renal tubular epithelial cell death, kidney inflammation, and subsequent interstitial fibrosis. In vitro, TNF-α-induced HK-2 cells injury could be ameliorated by FG-4592 pretreatment. In summary, our findings support the protective effect of FG-4592 against folic acid-induced mitochondrial dysfunction; therefore, FG-4592 treatment can be used as a useful strategy to facilitate tubular repair and mitigate acute kidney injury progression.

摘要

急性肾损伤由叶酸诱导后恢复不完全是进展为慢性肾病的主要危险因素。线粒体功能障碍被认为是急性肾损伤中适应性修复不良的关键因素。FG - 4592(一种缺氧诱导因子脯氨酰羟化酶抑制剂)治疗正成为减轻肾损伤的一种新方法;然而,其潜在机制尚未完全阐明。目前的研究表明,FG - 4592在给予叶酸后第7天对肾功能障碍和组织病理学损伤具有保护作用。FG - 4592通过促进肾小管细胞再生加速肾小管修复,表现为细胞核抗原阳性肾小管细胞增殖增加,并通过上调上皮细胞间紧密连接分子闭合蛋白 - 1和黏附连接分子E - 钙黏蛋白促进结构完整性。此外,FG - 4592通过恢复功能相关蛋白水通道蛋白1、水通道蛋白2和氯化钠协同转运体改善肾小管功能恢复。具体而言,FG - 4592预处理在叶酸注射后第7天抑制缺氧诱导因子 - 1α活化,这改善了超微结构异常,促进了ATP生成,并减轻了肾组织和线粒体中过量活性氧的产生。这主要是通过平衡线粒体动力学介导的,表现为线粒体分裂蛋白1和动力相关蛋白1下调以及线粒体融合蛋白1和视神经萎缩蛋白1上调。此外,FG - 4592预处理减轻了肾小管上皮细胞死亡、肾脏炎症以及随后的间质纤维化。在体外,FG - 4592预处理可改善TNF - α诱导的HK - 2细胞损伤。总之,我们的研究结果支持FG - 4592对叶酸诱导的线粒体功能障碍具有保护作用;因此,FG - 4592治疗可作为促进肾小管修复和减轻急性肾损伤进展的有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84f8/8915431/ea918f4ba330/fphar-12-788977-g001.jpg

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