Triggerable RNA nanodevices

J. Halman, Emily R Satterwhite, Jaclyn Smollett, Eckart Bindewald, Lorena Parlea, Mathias Viard, P. Zakrevsky, W. Kasprzak, K. Afonin, B. Shapiro
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引用次数: 1

Abstract

The targeted and conditional activation of pharmaceuticals is an increasingly important feature in modern personalized medicine. Nucleic acid nanoparticles show tremendous potential in this exploit due to their programmability and biocompatibility. Among the most powerful nucleic acid specific treatments is RNA interference-based therapeutics. RNA interference is a naturally occurring phenomenon in which specific genes are effectively silenced. Recently we have developed two different strategies based on customized multivalent nucleic acid nanoparticles with the ability to conditionally activate RNA interference in diseased cells as well as elicit detectable fluorescent responses.[1,2] These novel technologies can be further utilized for the simultaneous delivery and conditional intracellular activation of multiple therapeutic and biosensing functions to combat various diseases.
可触发的RNA纳米器件
药物的靶向和条件活化是现代个体化医疗日益重要的特征。核酸纳米颗粒由于其可编程性和生物相容性,在这方面显示出巨大的潜力。其中最强大的核酸特异性治疗是基于RNA干扰的治疗。RNA干扰是一种自然发生的现象,其中特定基因被有效地沉默。最近,我们开发了两种不同的策略,基于定制的多价核酸纳米颗粒,能够有条件地激活病变细胞中的RNA干扰,并引发可检测的荧光反应。[1,2]这些新技术可以进一步用于多种治疗和生物传感功能的同时递送和条件胞内激活,以对抗各种疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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