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糖尿病肾病中靶向线粒体的代谢性肾小管损伤

The Mitochondria-Targeted Metabolic Tubular Injury in Diabetic Kidney Disease.

作者信息

Jiang Hong, Shao Xue, Jia Sha, Qu Lihui, Weng Chunhua, Shen Xiujin, Wang Yucheng, Huang Hongfeng, Wang Yingying, Wang Cuili, Feng Shi, Wang Meizhen, Feng Huajun, Geekiyanage Sudarshanee, Davidson Alan James, Chen Jianghua

机构信息

Kidney Disease Center, the First Affiliated Hospital, College of Medicine, Zhejiang University, Hangzhou, China.

Key Laboratory of Nephropathy, Hangzhou, China.

出版信息

Cell Physiol Biochem. 2019;52(2):156-171. doi: 10.33594/000000011. Epub 2019 Feb 28.

Abstract

BACKGROUND/AIMS: Diabetic kidney disease (DKD) is a leading cause of end-stage renal disease (ESRD) worldwide, and the importance of tubular injury has been highlighted in recent years. However, the underlying mechanisms and effective therapeutic targets are still unclear. In this study, we investigated mtDNA, mitochondrial dynamics, function and metabolic pathways to determine if mitochondrial damage plays a critical role in the development of tubular injury in DKD patients.

METHODS

A cross-sectional study was carried out among healthy controls (HCs, n = 65), diabetes patients without kidney disease (DCs, n = 48) and DKD patients (n = 60). Serum, peripheral blood mononuclear cells (PBMCs) and kidney biopsy specimens were obtained from participants. Metabolomics was employed to investigate cellular metabolism.

RESULTS

DKD patients had decreased mtDNA copy numbers and increased mtDNA damage compared to DCs. Mitochondrial fragmentation was specifically presented in tubules, but not in podocytes of DKD patients. The accumulation of damaged mtDNA and fragmented mitochondria resulted in increased reactive oxygen species (ROS) generation, activation of apoptosis and loss of mitochondrial membrane potential (ΔΨm) in tubules and PBMCs. Furthermore, glycolysis and tricarboxylic acid (TCA) cycle was perturbed, and increased dihydroxyacetone phosphate (DHAP) and decreased succinyl-CoA synthetase (SCS) respectively in these two metabolic pathways were identified as potential biomarkers for tubular injury in DKD.

CONCLUSION

Our study indicates that mitochondrial damage could be the hallmark of tubular injury in DKD patients, and this would provide a novel and attractive therapeutic target to improve this disease.

摘要

背景/目的:糖尿病肾病(DKD)是全球终末期肾病(ESRD)的主要原因,近年来肾小管损伤的重要性已得到强调。然而,其潜在机制和有效的治疗靶点仍不清楚。在本研究中,我们研究了线粒体DNA、线粒体动力学、功能和代谢途径,以确定线粒体损伤是否在DKD患者肾小管损伤的发展中起关键作用。

方法

对健康对照者(HCs,n = 65)、无肾脏疾病的糖尿病患者(DCs,n = 48)和DKD患者(n = 60)进行了横断面研究。从参与者中获取血清、外周血单核细胞(PBMCs)和肾脏活检标本。采用代谢组学研究细胞代谢。

结果

与DCs相比,DKD患者的线粒体DNA拷贝数减少,线粒体DNA损伤增加。线粒体碎片化特异性出现在DKD患者的肾小管中,而不是足细胞中。受损线粒体DNA和碎片化线粒体的积累导致肾小管和PBMCs中活性氧(ROS)生成增加、细胞凋亡激活和线粒体膜电位(ΔΨm)丧失。此外,糖酵解和三羧酸(TCA)循环受到干扰,这两条代谢途径中磷酸二羟丙酮(DHAP)增加和琥珀酰辅酶A合成酶(SCS)减少分别被确定为DKD患者肾小管损伤的潜在生物标志物。

结论

我们的研究表明,线粒体损伤可能是DKD患者肾小管损伤的标志,这将为改善该疾病提供一个新的且有吸引力的治疗靶点。

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