Enzyme-triggered PEGylated siRNA-nanoparticles for controlled release of siRNA.

Peerada Yingyuad, Mathieu Mével, Carla Prata, Christos Kontogiorgis, Maya Thanou, Andrew D Miller
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Abstract

A key goal of our recent research efforts has been to develop novel 'triggerable nanoparticle' systems with real potential utility in vivo. These are designed to be stable from the point of administration until a target site of interest is reached, then triggered for the controlled release of therapeutic agent payload(s) at the target site by changes in local endogenous conditions or through the application of some exogenous stimulus. Here we describe investigations into the use of enzymes to trigger RNAi-mediated therapy through a process of enzyme-assisted nanoparticle triggerability. Our approach is to use PEG(2000)-peptidyl lipids with peptidyl moieties sensitive to tumour-localized elastase or matrix metalloproteinase-2 digestion, and from these prepare putative enzyme-triggered PEGylated siRNA-nanoparticles. Our results provide initial proof of concept in vitro. From these data, we propose that this concept should be applicable for functional delivery of therapeutic nucleic acids to tumour cells in vivo, although the mechanism for enzyme-assisted nanoparticle triggerability remains to be fully characterized.

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酶触发的聚乙二醇化siRNA纳米颗粒用于siRNA的控制释放。
我们最近研究工作的一个关键目标是开发具有真正潜在体内效用的新型“可触发纳米颗粒”系统。这些药物被设计为从给药点稳定,直到到达感兴趣的靶点,然后通过局部内源性条件的变化或通过一些外源性刺激的应用,在靶点触发治疗剂有效载荷的可控释放。在这里,我们描述了通过酶辅助纳米颗粒可触发性的过程,使用酶来触发rnai介导的治疗的研究。我们的方法是使用PEG(2000)-肽基脂质,其肽基部分对肿瘤定位的弹性酶或基质金属蛋白酶-2消化敏感,并从这些制备推定的酶触发的聚乙二醇化sirna纳米颗粒。我们的结果提供了体外概念的初步证明。根据这些数据,我们提出这一概念应该适用于治疗性核酸在体内向肿瘤细胞的功能性递送,尽管酶辅助纳米颗粒触发性的机制仍有待充分表征。
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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