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聚合物胶束与小干扰RNA相互作用的表征:实验与分子动力学联合研究

Characterization of the Interaction of Polymeric Micelles with siRNA: A Combined Experimental and Molecular Dynamics Study.

作者信息

Marquet Franck, Stojceski Filip, Grasso Gianvito, Patrulea Viorica, Danani Andrea, Borchard Gerrit

机构信息

Section of Pharmaceutical Sciences, University of Geneva, CMU-Rue Michel-Servet 1, 1211 Geneva, Switzerland.

Institute of Pharmaceutical Sciences of Western Switzerland (ISPSO), University of Geneva, CMU-Rue Michel-Servet 1, 1211 Geneva, Switzerland.

出版信息

Polymers (Basel). 2022 Oct 19;14(20):4409. doi: 10.3390/polym14204409.

Abstract

The simulation of large molecular systems remains a daunting challenge, which justifies the exploration of novel methodologies to keep computers as an ideal companion tool for everyday laboratory work. Whole micelles, bigger than 20 nm in size, formed by the self-assembly of hundreds of copolymers containing more than 50 repeating units, have until now rarely been simulated, due to a lack of computational power. Therefore, a flexible amphiphilic triblock copolymer (mPEG-α-PLL-PLA) containing a total of 80 repeating units, has been emulated and synthesized to embody compactified nanoconstructs of over 900 assembled copolymers, sized between 80 and 100 nm, for siRNA complexing purposes. In this study, the tailored triblock copolymers containing a controlled number of amino groups, were used as a support model to address the binding behavior of STAT3-siRNA, in the formation of micelleplexes. Since increasingly complex drug delivery systems require an ever more optimized physicochemical characterization, a converging description has been implemented by a combination of experimentation and computational simulations. The computational data were advantageous in allowing for the assumption of an optimal N/P ratio favoring both conformational rigidifications of STAT3-siRNA with low competitive phenomena at the binding sites of the micellar carriers. These calculations were consistent with the experimental data showing that an N/P ratio of 1.5 resulted in a sufficient amount of complexed STAT3-siRNA with an electrical potential at the slipping plane of the nanopharmaceuticals, close to the charge neutralization.

摘要

大分子系统的模拟仍然是一项艰巨的挑战,这使得探索新方法成为必要,以便让计算机成为日常实验室工作的理想辅助工具。由数百个含有50多个重复单元的共聚物自组装形成的尺寸大于20 nm的完整胶束,由于缺乏计算能力,迄今为止很少被模拟。因此,一种总共含有80个重复单元的柔性两亲性三嵌段共聚物(mPEG-α-PLL-PLA)已被模拟并合成,以体现超过900个组装共聚物的致密化纳米结构,尺寸在80至100 nm之间,用于siRNA复合。在本研究中,含有可控数量氨基的定制三嵌段共聚物被用作支持模型,以研究在胶束复合物形成过程中STAT3-siRNA的结合行为。由于越来越复杂的药物递送系统需要越来越优化的物理化学表征,因此通过实验和计算模拟相结合实现了一种综合描述。计算数据有利于假设一个最佳的N/P比,该比值有利于STAT3-siRNA的构象刚性化,同时在胶束载体的结合位点具有低竞争现象。这些计算与实验数据一致,实验数据表明N/P比为1.5会导致足够量的复合STAT3-siRNA,纳米药物滑动面上的电势接近电荷中和。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a86/9611052/5b969ebe112e/polymers-14-04409-g001.jpg

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