Hall A M, Unwin R J, Hanna M G, Duchen M R
Department of Physiology, University College London, London, UK.
QJM. 2008 Oct;101(10):755-66. doi: 10.1093/qjmed/hcn060. Epub 2008 May 16.
Our knowledge of mitochondrial biology has advanced significantly in the last 10 years. The effects of mitochondrial dysfunction or cytopathy (MC) on the heart and neuromuscular system are well known, and its involvement in the pathophysiology of several common clinical disorders such as diabetes, hyperlipidaemia and hypertension, is just beginning to emerge; however, its contribution to renal disease has received much less attention, and the available literature raises some interesting questions: Why do children with MC commonly present with a renal phenotype that is often quite different from adults? How does a mutation in mitochondrial DNA (mtDNA) lead to disease at the cellular level, and how can a single mtDNA point mutation result in such a variety of renal- and non-renal phenotypes in isolation or combined? Why are some regions of the nephron seemingly more sensitive to mitochondrial dysfunction and damage by mitochondrial toxins? Perhaps most important of all, what can be done to diagnose and treat MC, now and in the future? In this review we summarize our current understanding of the relationship between mitochondrial biology, renal physiology and clinical nephrology, in an attempt to try to answer some of these questions. Although MC is usually considered a rare defect, it is almost certainly under-diagnosed. A greater awareness and understanding of kidney involvement in MC might lead to new treatment strategies for diseases in which mitochondrial dysfunction is secondary to toxic or ischaemic injury, rather than to an underlying genetic mutation.
在过去十年中,我们对线粒体生物学的认识有了显著进展。线粒体功能障碍或细胞病变(MC)对心脏和神经肌肉系统的影响已广为人知,其在糖尿病、高脂血症和高血压等几种常见临床疾病病理生理学中的作用才刚刚开始显现;然而,其对肾脏疾病的影响却很少受到关注,现有文献提出了一些有趣的问题:为什么患有MC的儿童通常表现出与成人截然不同的肾脏表型?线粒体DNA(mtDNA)突变如何在细胞水平上导致疾病,以及单个mtDNA点突变如何单独或联合导致如此多种肾脏和非肾脏表型?为什么肾单位的某些区域似乎对线粒体功能障碍和线粒体毒素损伤更敏感?也许最重要的是,现在和未来可以采取什么措施来诊断和治疗MC?在这篇综述中,我们总结了目前对线粒体生物学、肾脏生理学和临床肾脏病学之间关系的理解,试图回答其中一些问题。尽管MC通常被认为是一种罕见的缺陷,但几乎可以肯定的是它未得到充分诊断。对MC中肾脏受累情况有更高的认识和理解,可能会为线粒体功能障碍继发于毒性或缺血性损伤而非潜在基因突变的疾病带来新的治疗策略。