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RNA干扰:一种新型反义技术及其治疗潜力。

RNAi: a novel antisense technology and its therapeutic potential.

作者信息

Dallas Anne, Vlassov Alexander V

机构信息

SomaGenics, Delaware Ave, Santa Cruz, CA 95060, USA.

出版信息

Med Sci Monit. 2006 Apr;12(4):RA67-74. Epub 2006 Mar 28.

Abstract

Antisense oligonucleotide agents induce the inhibition of target gene expression in a sequence-specific manner by exploiting the ability of oligonucleotides to bind to target RNAs via Watson-Crick hybridization. Once bound, the antisense agent either disables or induces the degradation of the target RNA. This technology may be used for therapeutic purposes, functional genomics, and target validation. There are three major categories of gene-silencing molecules: (1) antisense oligonucleotide derivatives that, depending on their type, recruit RNase H to cleave the target mRNA or inhibit translation by steric hindrance; (2) ribozymes and deoxyribozymes--catalytically active oligonucleotides that cause RNA cleavage; (3) small interfering double-stranded RNA molecules that induce RNA degradation through a natural gene-silencing pathway called RNA interference (RNAi). RNAi is the latest addition to the family of antisense technologies and has rapidly become the most widely used approach for gene knockdown because of its potency. In this mini-review, we introduce the RNAi effect, briefly compare it with existing antisense technologies, and discuss its therapeutic potential, focusing on recent animal studies and ongoing clinical trials. RNAi may provide new therapeutics for treating viral infections, neurodegenerative diseases, septic shock, macular degeneration, cancer, and other illnesses, although in vivo delivery of small interfering RNAs remains a significant obstacle.

摘要

反义寡核苷酸药物通过利用寡核苷酸经由沃森-克里克杂交与靶RNA结合的能力,以序列特异性方式诱导靶基因表达的抑制。一旦结合,反义药物要么使靶RNA失活,要么诱导其降解。该技术可用于治疗目的、功能基因组学和靶点验证。基因沉默分子主要有三大类:(1)反义寡核苷酸衍生物,根据其类型,招募核糖核酸酶H切割靶mRNA或通过空间位阻抑制翻译;(2)核酶和脱氧核酶——具有催化活性的寡核苷酸,可导致RNA切割;(3)小干扰双链RNA分子,通过一种称为RNA干扰(RNAi)的天然基因沉默途径诱导RNA降解。RNAi是反义技术家族中的最新成员,由于其效力,已迅速成为最广泛使用的基因敲低方法。在本综述中,我们介绍RNAi效应,简要将其与现有的反义技术进行比较,并讨论其治疗潜力,重点关注近期的动物研究和正在进行的临床试验。RNAi可能为治疗病毒感染、神经退行性疾病、脓毒性休克、黄斑变性、癌症和其他疾病提供新的治疗方法,尽管小干扰RNA的体内递送仍然是一个重大障碍。

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