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肾病大鼠模型的基因组研究。

Genomic research in rat models of kidney disease.

作者信息

Yagil Yoram, Yagil Chana

机构信息

Laboratory for Molecular Medicine, Israeli Rat Genome Center and Department of Nephrology, Ben-Gurion University, Ashkelon, Israel.

出版信息

Methods Mol Biol. 2010;597:427-44. doi: 10.1007/978-1-60327-389-3_29.

Abstract

Current understanding of the mechanisms underlying renal disease in humans is incomplete. Consequently, our ability to prevent the occurrence of renal disease or treat kidney disease once it develops is limited. There are objective difficulties in investigating kidney disease directly in humans, leading investigators to resort to experimental animal models that simulate renal disease in humans. Animal models have thus been a tool of major importance in the study of normal renal physiology and have been crucial in shedding light on the complex mechanisms involved in normal kidney function and in our current understanding of and ability to treat renal disease. Among the animal models, rat has been the preferred and most commonly used species for the investigation of renal disease. This chapter reviews what has been achieved over the years, using rat as a tool for the investigation of renal disease in humans, focusing on the contribution of rat genetics and genomics to the elucidation of the mechanisms underlying the pathophysiology of the major types of renal disease, including primary and secondary renal diseases.

摘要

目前对人类肾脏疾病潜在机制的理解并不完整。因此,我们预防肾脏疾病发生或在其发生后进行治疗的能力有限。直接在人体中研究肾脏疾病存在客观困难,这使得研究人员诉诸于模拟人类肾脏疾病的实验动物模型。因此,动物模型一直是研究正常肾脏生理学的重要工具,对于阐明正常肾脏功能所涉及的复杂机制以及我们目前对肾脏疾病的理解和治疗能力至关重要。在动物模型中,大鼠一直是研究肾脏疾病的首选且最常用的物种。本章回顾了多年来以大鼠作为研究人类肾脏疾病工具所取得的成果,重点关注大鼠遗传学和基因组学对阐明包括原发性和继发性肾脏疾病在内的主要类型肾脏疾病病理生理学潜在机制的贡献。

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