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微小RNA与肾脏移植

microRNA and Kidney Transplantation.

作者信息

Jelencsics Kíra, Oberbauer Rainer

机构信息

Medical University of Vienna, Währinger Gürtel 18-20, Vienna, 1090, Austria.

出版信息

Adv Exp Med Biol. 2015;888:271-90. doi: 10.1007/978-3-319-22671-2_14.

Abstract

The kidney serves as the main clearance organ of our body, filtrating and excreting metabolic waste products. Various intrinsic and extrinsic conditions can lead to kidney injury, roughly 0.1% of the population suffer from end stage renal disease. Renal transplantation reinstitutes an almost normal quality of life; again it is cost effective and thus the preferred treatment of terminal renal failure. miRNAs play pivotal roles in immune responses and inflammation, which makes them particularly interesting in the field of transplantation and in understanding the molecular pathways of allograft pathologies such as delayed function or cellular and antibody mediated rejection. As kidney biopsy is part of the routine disease monitoring, the identification of miRNA pattern is feasible in different stages of the injury. Furthermore miRNAs are easy to detect not only in tissue samples but also in body fluids such as blood and urine. Their regulatory capacity of biological processes together with their stability makes them excellent candidates for noninvasive monitoring of kidney pathology. There is an accumulating knowledge about diseases-specific miRNA signatures in distinct kidney injuries. In the following chapter we present the current understanding of miRNAs regulation of intragraft processes after kidney transplantation.

摘要

肾脏是人体的主要清除器官,负责过滤和排泄代谢废物。各种内在和外在因素均可导致肾损伤,约0.1%的人口患有终末期肾病。肾移植可使生活质量几乎恢复正常,而且具有成本效益,因此是终末期肾衰竭的首选治疗方法。微小RNA(miRNA)在免疫反应和炎症中发挥关键作用,这使得它们在移植领域以及理解同种异体移植病理(如移植肾功能延迟或细胞和抗体介导的排斥反应)的分子途径方面特别引人关注。由于肾活检是常规疾病监测的一部分,因此在损伤的不同阶段识别miRNA模式是可行的。此外,miRNA不仅易于在组织样本中检测,也易于在血液和尿液等体液中检测。它们对生物过程的调节能力及其稳定性使其成为肾脏病理无创监测的理想候选者。关于不同肾脏损伤中疾病特异性miRNA特征的知识正在不断积累。在接下来的章节中,我们将介绍目前对肾移植后miRNA对移植内过程调节的理解。

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