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糖尿病肾病中的线粒体。

Mitochondria in Diabetic Kidney Disease.

机构信息

Department of Foundational Sciences, College of Medicine, Central Michigan University, Mount Pleasant, MI 48858, USA.

出版信息

Cells. 2021 Oct 29;10(11):2945. doi: 10.3390/cells10112945.

Abstract

Diabetic kidney disease (DKD) is the leading cause of end stage renal disease (ESRD) in the USA. The pathogenesis of DKD is multifactorial and involves activation of multiple signaling pathways with merging outcomes including thickening of the basement membrane, podocyte loss, mesangial expansion, tubular atrophy, and interstitial inflammation and fibrosis. The glomerulo-tubular balance and tubule-glomerular feedback support an increased glomerular filtration and tubular reabsorption, with the latter relying heavily on ATP and increasing the energy demand. There is evidence that alterations in mitochondrial bioenergetics in kidney cells lead to these pathologic changes and contribute to the progression of DKD towards ESRD. This review will focus on the dialogue between alterations in bioenergetics in glomerular and tubular cells and its role in the development of DKD. Alterations in energy substrate selection, electron transport chain, ATP generation, oxidative stress, redox status, protein posttranslational modifications, mitochondrial dynamics, and quality control will be discussed. Understanding the role of bioenergetics in the progression of diabetic DKD may provide novel therapeutic approaches to delay its progression to ESRD.

摘要

糖尿病肾病(DKD)是美国终末期肾病(ESRD)的主要原因。DKD 的发病机制是多因素的,涉及多个信号通路的激活,其合并结果包括基底膜增厚、足细胞丢失、系膜扩张、肾小管萎缩以及间质炎症和纤维化。肾小球-肾小管平衡和肾小管-肾小球反馈支持肾小球滤过率和肾小管重吸收率的增加,后者严重依赖于 ATP 并增加能量需求。有证据表明,肾脏细胞中线粒体生物能量的改变导致这些病理变化,并促使 DKD 向 ESRD 进展。本文综述将重点关注肾小球和肾小管细胞生物能量改变及其在 DKD 发展中的作用之间的对话。将讨论能量底物选择、电子传递链、ATP 生成、氧化应激、氧化还原状态、蛋白质翻译后修饰、线粒体动力学和质量控制的改变。了解生物能量在糖尿病 DKD 进展中的作用可能为延迟其进展为 ESRD 提供新的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e68/8616075/966f7a6ac290/cells-10-02945-g001.jpg

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