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综述——氨基糖苷类微阵列的现状与应用

Review - Current status and applications of aminoglycoside microarrays.

作者信息

Wang Xiaoli, Wang Xueyu, Zhang Beilei, Song Dawei, Hu Jing, Yin Jian

机构信息

Key Laboratory of Carbohydrate Chemistry and Biotechnology Ministry of Education, School of Biotechnology, Jiangnan University, Lihu Avenue, Wuxi, China.

Wuxi Medical School, Public Health Research Center, Jiangnan University, Lihu Avenue, Wuxi, China.

出版信息

Pak J Pharm Sci. 2016 Sep;29(5 Suppl):1869-1876.

Abstract

Amino glycosides, one of the important broad-spectrum antibacterials, treat clinically against various bacterial infections. In the last decade, amino glycoside micro arrays have become one of main technologies for analyzing interactions between antibiotics and therapeutic targets in a high-throughput manner. A series of methods have been developed to immobilize amino glycosides on the functional group-coated glass slides in a micro array format. The amino glycoside micro arrays technology has been widely used for rapid determination of interactions of the amino glycosides with ribosome RNAs (rRNA) and proteins. Several clinically used amino glycosides are mainly exerted by binding to bacterial rRNA, which leads to mistranslation of protein. However, amino glycosides are losing efficacy due to the increased resistance mostly caused by enzymes modification. The micro array-based technology is mainly used in developing novel antibiotics, discovering new RNA targets, and identifying inhibitors of resistance-causing enzymes. This review will focus on the construction of amino glycoside micro arrays, their recent status and applications in biological and biomedical research and some challenges in further research.

摘要

氨基糖苷类是重要的广谱抗菌药物之一,临床上用于治疗各种细菌感染。在过去十年中,氨基糖苷类微阵列已成为以高通量方式分析抗生素与治疗靶点之间相互作用的主要技术之一。已经开发出一系列方法以微阵列形式将氨基糖苷类固定在涂覆有官能团的载玻片上。氨基糖苷类微阵列技术已广泛用于快速测定氨基糖苷类与核糖体RNA(rRNA)和蛋白质的相互作用。几种临床使用的氨基糖苷类主要通过与细菌rRNA结合发挥作用,这会导致蛋白质翻译错误。然而,由于主要由酶修饰引起的耐药性增加,氨基糖苷类正在失去疗效。基于微阵列的技术主要用于开发新型抗生素、发现新的RNA靶点以及鉴定耐药酶的抑制剂。本综述将重点关注氨基糖苷类微阵列的构建、它们在生物学和生物医学研究中的最新状况和应用以及进一步研究中的一些挑战。

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