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尿酸转运体多态性对尿酸转运的影响。

The effect of polymorphism of uric acid transporters on uric acid transport.

机构信息

Tianjin University of Traditional Chinese Medicine, Tianjin, 300193, China.

State Key Laboratory of Drug Release Technology and Pharmacokinetics, Tianjin Institute of Pharmaceutical Research New Drug Evaluation Research, Tianjin, 300031, China.

出版信息

J Nephrol. 2019 Apr;32(2):177-187. doi: 10.1007/s40620-018-0546-7. Epub 2018 Oct 31.

Abstract

The abnormal metabolism of uric acid results in many disease such as chronic kidney disease, hyperuricemia, nephrolithiasis, gout, hypertension, vascular disease and so on. Serum uric acid levels are maintained by the balance between production and elimination. There are many factors that maintain the balance of serum uric acid. One of them is transporters which are responsible for the debouchment of uric acid within blood. The transport and excretion of uric acid is a complicated procedure which is related with various transporters such as OAT1, OAT3, OAT4, URAT1, GLUT9, BCRP, MRP4, NPT1, NTP4, and so on. In recent years, a large number of genome-wide association studies have shown that the single nucleotide polymorphisms of uric acid transporters were closely related to serum uric acid level. What's more, some mutations on these gene locus may also break the balance of serum uric acid. Here, the polymorphisms of uric acid transporters closely related with the serum uric acid balance were reviewed and discussed because of their important significance in clinical therapy for a precision medicine. The mechanism of metabolic diseases with gene variation may provide new strategy for the design and development of innovative drug to treat diseases with uric acid metabolic disturbance.

摘要

尿酸的异常代谢会导致许多疾病,如慢性肾脏病、高尿酸血症、肾结石、痛风、高血压、血管疾病等。血清尿酸水平的维持取决于生成和消除之间的平衡。有许多因素可以维持血清尿酸的平衡。其中之一是转运体,它负责尿酸在血液中的排泄。尿酸的转运和排泄是一个复杂的过程,涉及多种转运体,如 OAT1、OAT3、OAT4、URAT1、GLUT9、BCRP、MRP4、NPT1、NTP4 等。近年来,大量全基因组关联研究表明,尿酸转运体的单核苷酸多态性与血清尿酸水平密切相关。此外,这些基因座上的一些突变也可能打破血清尿酸的平衡。在此,由于其在精准医学临床治疗中的重要意义,对与血清尿酸平衡密切相关的尿酸转运体的多态性进行了综述和讨论。基因变异引起的代谢性疾病的机制可能为治疗尿酸代谢紊乱相关疾病的创新药物的设计和开发提供新的策略。

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