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用 3' 胆固醇修饰 siRNA 可增加核酶保护,并通过选择性 siRNA 多聚物抑制天然 mRNA。

The modification of siRNA with 3' cholesterol to increase nuclease protection and suppression of native mRNA by select siRNA polyplexes.

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, University of Nebraska Medical Center, Omaha, NE 68198-6025, USA.

出版信息

Biomaterials. 2011 Feb;32(5):1404-11. doi: 10.1016/j.biomaterials.2010.10.019. Epub 2010 Nov 2.

Abstract

Polymer-siRNA complexes (siRNA polyplexes) are being actively developed to improve the therapeutic application of siRNA. A major limitation for many siRNA polyplexes, however, is insufficient mRNA suppression. Given that modifying the sense strand of siRNA with 3' cholesterol (chol-siRNA) increases the activity of free nuclease-resistant siRNA in vitro and in vivo, we hypothesized that complexation of chol-siRNA can increase mRNA suppression by siRNA polyplexes. In this study, the characteristics and siRNA activity of self assembled polyplexes formed with chol-siRNA or unmodified siRNA were compared using three types of conventional, positively charged polymers: (i) biodegradable, cross-linked nanogels (BDNG) (ii) graft copolymers (PEI-PEG), and (iii) linear block copolymers (PLL10-PEG, and PLL50-PEG). Chol-siRNA did not alter complex formation or the resistance of polyplexes to siRNA displacement by heparin but increased nuclease protection by BDNG, PLL10-PEG, and PLL50-PEG polyplexes over polyplexes with unmodified siRNA. Chol-CYPB siRNA increased suppression of native CYPB mRNA in mammary microvascular endothelial cells (MVEC) by BDNG polyplexes (35%) and PLL10-PEG polyplexes (69%) over comparable CYPB siRNA polyplexes but had no effect on PEI-PEG or PLL50-PEG polyplexes. Overall, these results indicate that complexation of chol-siRNA increases nuclease protection and mRNA suppression by select siRNA polyplexes. These results also suggest that polycationic block length is an important factor in increasing mRNA suppression by PLL-PEG chol-siRNA polyplexes in mammary MVEC.

摘要

聚合物-siRNA 复合物(siRNA 多聚物)正在被积极开发以改善 siRNA 的治疗应用。然而,对于许多 siRNA 多聚物来说,一个主要的限制是 mRNA 抑制不足。鉴于用 3'胆固醇修饰 siRNA 的 sense 链(chol-siRNA)可以增加游离核酸酶抗性 siRNA 在体外和体内的活性,我们假设 chol-siRNA 的复合物可以增加 siRNA 多聚物对 mRNA 的抑制作用。在这项研究中,使用三种类型的常规、带正电荷的聚合物:(i)可生物降解的交联纳米凝胶(BDNG)(ii)接枝共聚物(PEI-PEG)和(iii)线性嵌段共聚物(PLL10-PEG 和 PLL50-PEG),比较了 chol-siRNA 自组装形成的多聚物的特性和 siRNA 活性。chol-siRNA 不会改变复合物的形成或多聚物对肝素引起的 siRNA 置换的抗性,但增加了 BDNG、PLL10-PEG 和 PLL50-PEG 多聚物对未修饰 siRNA 多聚物的核酸酶保护。与可比的 CYPB siRNA 多聚物相比,chol-CYPB siRNA 增加了 BDNG 多聚物(35%)和 PLL10-PEG 多聚物(69%)对天然 CYPB mRNA 的抑制作用,但对 PEI-PEG 或 PLL50-PEG 多聚物没有影响。总的来说,这些结果表明 chol-siRNA 的复合物增加了核酸酶保护和特定 siRNA 多聚物对 mRNA 的抑制作用。这些结果还表明,聚阳离子嵌段长度是 PLL-PEG-chol-siRNA 多聚物在乳腺微血管内皮细胞(MVEC)中增加 mRNA 抑制的一个重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7231/2998892/0db39e9dbfe0/nihms247522f1.jpg

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