Targeting Mitochondria and Reactive Oxygen Species-Driven Pathogenesis in Diabetic Nephropathy.

Q3 Medicine Review of Diabetic Studies Pub Date : 2015-03-01 DOI:10.1900/RDS.2015.12.134
R. Lindblom, G. Higgins, M. Coughlan, J. D. de Haan
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引用次数: 86

Abstract

Diabetic kidney disease is one of the major microvascular complications of both type 1 and type 2 diabetes mellitus. Approximately 30% of patients with diabetes experience renal complications. Current clinical therapies can only mitigate the symptoms and delay the progression to end-stage renal disease, but not prevent or reverse it. Oxidative stress is an important player in the pathogenesis of diabetic nephropathy. The activity of reactive oxygen and nitrogen species (ROS/NS), which are by-products of the diabetic milieu, has been found to correlate with pathological changes observed in the diabetic kidney. However, many clinical studies have failed to establish that antioxidant therapy is renoprotective. The discovery that increased ROS/NS activity is linked to mitochondrial dysfunction, endoplasmic reticulum stress, inflammation, cellular senescence, and cell death calls for a refined approach to antioxidant therapy. It is becoming clear that mitochondria play a key role in the generation of ROS/NS and their consequences on the cellular pathways involved in apoptotic cell death in the diabetic kidney. Oxidative stress has also been associated with necrosis via induction of mitochondrial permeability transition. This review highlights the importance of mitochondria in regulating redox balance, modulating cellular responses to oxidative stress, and influencing cell death pathways in diabetic kidney disease. ROS/NS-mediated cellular dysfunction corresponds with progressive disease in the diabetic kidney, and consequently represents an important clinical target. Based on this consideration, this review also examines current therapeutic interventions to prevent ROS/NS-derived injury in the diabetic kidney. These interventions, mainly aimed at reducing or preventing mitochondrial-generated oxidative stress, improving mitochondrial antioxidant defense, and maintaining mitochondrial integrity, may deliver alternative approaches to halt or prevent diabetic kidney disease.
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靶向线粒体和活性氧驱动的糖尿病肾病发病机制。
糖尿病肾病是1型和2型糖尿病的主要微血管并发症之一。大约30%的糖尿病患者会出现肾脏并发症。目前的临床治疗只能减轻症状和延缓进展到终末期肾脏疾病,但不能预防或逆转它。氧化应激在糖尿病肾病的发病机制中起重要作用。作为糖尿病环境的副产物,活性氧和活性氮(ROS/NS)的活性已被发现与糖尿病肾脏的病理变化有关。然而,许多临床研究未能证实抗氧化治疗具有保护肾的作用。ROS/NS活性的增加与线粒体功能障碍、内质网应激、炎症、细胞衰老和细胞死亡有关,这一发现需要一种改进的抗氧化治疗方法。越来越清楚的是,线粒体在ROS/NS的产生及其对糖尿病肾脏凋亡细胞死亡的细胞通路的影响中起着关键作用。氧化应激也通过诱导线粒体通透性转变与坏死有关。这篇综述强调了线粒体在糖尿病肾病中调节氧化还原平衡、调节细胞对氧化应激的反应和影响细胞死亡途径中的重要性。ROS/ ns介导的细胞功能障碍与糖尿病肾脏疾病的进展相对应,因此是一个重要的临床靶点。基于这一考虑,本综述还探讨了目前预防糖尿病肾脏中ROS/ ns源性损伤的治疗干预措施。这些干预措施主要旨在减少或预防线粒体产生的氧化应激,改善线粒体抗氧化防御,并维持线粒体完整性,可能提供阻止或预防糖尿病肾病的替代方法。
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来源期刊
Review of Diabetic Studies
Review of Diabetic Studies Medicine-Internal Medicine
CiteScore
1.80
自引率
0.00%
发文量
28
期刊介绍: The Review of Diabetic Studies (RDS) is the society"s peer-reviewed journal published quarterly. The purpose of The RDS is to support and encourage research in biomedical diabetes-related science including areas such as endocrinology, immunology, epidemiology, genetics, cell-based research, developmental research, bioengineering and disease management.
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