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miRNA、shRNA 和 siRNA 的体内递呈方面。

In vivo delivery aspects of miRNA, shRNA and siRNA.

机构信息

Pharmacy Department, Faculty of Technology and Engineering, The Maharaja Sayajirao University of Baroda, Kalabhavan, Vadodara, Gujarat State, India.

出版信息

Crit Rev Ther Drug Carrier Syst. 2012;29(6):487-527. doi: 10.1615/critrevtherdrugcarriersyst.v29.i6.20.

Abstract

RNA interference (RNAi) is a wondrous phenomenon that silences the expression of targeted genes via distinct messenger RNA degradation pathways. It has the potential as a therapeutic agent for variety of diseases, including viral infections, cancer, and immune diseases. RNAi mainly conducts gene regulation by 3 ways: microRNA, short hairpin RNA, and small interfering RNA. However, in vivo delivery of RNAi therapeutics is restricted because of charge density, molecular weight, and instability in the presence of nucleases. Furthermore, intracellular accumulation and endosomal escape have remained significant barriers in the delivery of these macromolecules. Many viral and nonviral delivery vectors have been thoroughly investigated to overcome these barriers. Researchers have found applications for RNAi in a variety of diseases and, hence, various delivery systems have been explored to satisfy the need. Both local and systemic strategies have been utilized to elicit RNAi's effect and each carries its own therapeutic implications with varying margins of safety. This review is an effort to describe the types of RNAi and their application in a variety of diseases using both local and systemic delivery approaches. It is sure that advancement in this direction will evolve a new landscape for treating a range of diseases.

摘要

RNA 干扰 (RNAi) 是一种奇妙的现象,通过不同的信使 RNA 降解途径沉默靶向基因的表达。它有潜力成为治疗各种疾病的药物,包括病毒感染、癌症和自身免疫性疾病。RNAi 主要通过 3 种方式进行基因调控:microRNA、短发夹 RNA 和小干扰 RNA。然而,由于电荷密度、分子量以及在核酸酶存在下的不稳定性,RNAi 治疗剂的体内递送受到限制。此外,细胞内积累和内涵体逃逸仍然是这些大分子递送到细胞内的重要障碍。许多病毒和非病毒递送载体已经被深入研究以克服这些障碍。研究人员已经发现 RNAi 在多种疾病中的应用,因此,已经探索了各种递送系统以满足需求。已经利用局部和全身策略来引发 RNAi 的作用,每种策略都有其自身的治疗意义,安全性也各不相同。这篇综述旨在描述使用局部和全身递送方法的各种 RNAi 类型及其在多种疾病中的应用。可以肯定的是,这一领域的进展将为治疗一系列疾病开辟新的局面。

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