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pH-responsive controlled release of mesoporous silica nanoparticles capped with Schiff base copolymer gatekeepers: Experiment and molecular dynamics simulation

机译:用Schiff碱共聚物门守人封装的介孔二氧化硅纳米粒子的pH响应控制释放:实验和分子动力学模拟

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摘要

In this study, Schiff-base copolymer coating and mesoporous silica nanoparticles (Polymer@MSN) were synthesized by ARGET ATRP and sol-gel method respectively. Imine bonds acted as the pH-cleavable linker between copolymer gatekeepers and MSN to promote the controlled-release performance of DOX. The DOX-loaded nanoparticles (Polymer@MSN-DOX) were spherical with a diameter of approximately 150 nm. At pH 5.0 (pH of intracellular environment), the cumulative release of DOX within 72 h was 45% higher than that at pH 7.4 (normal physiological environment) due to the cleavage of imine bonds, showing obvious pH-responsive drug release performance. Confocal microscopy studies and in vitro cytotoxicity results revealed that Polymer@MSN-DOX could smoothly enter HepG2 cells to release DOX and show a high cytotoxicity. Noted specially that molecular dynamics simulations were applied to investigate the microcosmic adsorption/diffusion interaction between drug molecules and MSN. Simulation results showed that the driving force of DOX adsorption in mesoporous channels was originated from hydrogen bonding interaction between the mesoporous wall and DOX molecules and pi-pi conjugated interaction between benzene rings in addition to concentration differences. The structural design of composite nanocarriers in this research could provide guidance for the application of pH responsive MSN-based drug delivery system.
机译:在该研究中,Schiff-碱共聚物涂层和介孔二氧化硅纳米粒子(聚合物@ MSN)分别由arget ATRP和溶胶 - 凝胶法合成。亚胺键作为共聚物门守和MSN之间的pH可切割的接头,以促进DOX的控制释放性能。 DOX加载的纳米颗粒(聚合物@ MSN-DOX)是球形,直径约为150nm。在pH 5.0(细胞内环境的pH)中,由于亚胺键的切割,72小时内的DOX释放比pH 7.4(正常生理环境)高45%,显示出明显的pH响应药物释放性能。共聚焦显微镜研究和体外细胞毒性结果表明,聚合物@ MSN-DOX可以平稳进入HepG2细胞以释放DOX并显示出高细胞毒性。特别注意,应用分子动力学模拟来研究药物分子和MSN之间的微观吸附/扩散相互作用。仿真结果表明,除了浓度差异之外,源壁和DOX分子与苯环之间的氢键相互作用和苯环之间的氢键相互作用源。本研究中复合纳米载体的结构设计可以为PH响应基于MSN的药物输送系统的应用提供指导。

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