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用于智能药物递送的具有pH响应行为的可逆交联两亲性聚合物胶束的制备。

Preparation of reversible cross-linked amphiphilic polymeric micelles with pH-responsive behavior for smart drug delivery.

作者信息

Tan Liu, Fan Jinling, Zhou Yuqing, Xiong Di, Duan Manzhen, Hu Ding, Wu Zhimin

机构信息

School of Chemical Engineering, Xiangtan University Xiangtan 411105 China

National & Local United Engineering Research Centre for Chemical Process Simulation and Integration, Xiangtan University Xiangtan 411105 China.

出版信息

RSC Adv. 2023 Sep 25;13(40):28165-28178. doi: 10.1039/d3ra05575b. eCollection 2023 Sep 18.

Abstract

A new type of reversible cross-linked and pH-responsive polymeric micelle (PM), poly[polyethylene glycol methacrylate--2-(acetoacetoxy)ethyl methacrylate]--poly [2-(dimethylamino)ethyl methacrylate] [P(PEGMA--AEMA)--PDMAEMA], was synthesized for targeted delivery of curcumin. After reversible cross-linking of the micellar shell, the PMs with a typical core-shell structure exhibited excellent stability against extensive dilution and good reversibility of pH-responsiveness in solutions with different pH values. P(PEGMA--AEMA)--PDMAEMA has the lowest critical micelle concentration (CMC) value (0.0041 mg mL), the highest loading capacity (13.86%) and entrapment efficiency (97.03%). A slow sustained drug release at pH 7.4 with 12.36% in 108 h, while a fast release (42.36%) was observed at pH 5.0. Furthermore, a dissipative particle dynamics (DPD) simulation method was employed to investigate the self-assembly process and pH-responsive behavior of PMs. The optimal drug-carrier ratio (2%) and fraction of water (92%) were confirmed by analyzing the drug distribution and morphology of micelles during the self-assembly process of the block copolymer. The simulation results were consistent with experimental results, indicating DPD simulation shows potential to study the structure properties of reversible cross-linked micelles. The present findings provide a new method for the development of SDDS with good structural stability and controlled drug release properties.

摘要

合成了一种新型的可逆交联且pH响应性聚合物胶束(PM),即聚[聚乙二醇甲基丙烯酸酯-甲基丙烯酸2-(乙酰乙酰氧基)乙酯]-聚[甲基丙烯酸2-(二甲氨基)乙酯][P(PEGMA-AEMA)-PDMAEMA],用于姜黄素的靶向递送。胶束外壳进行可逆交联后,具有典型核壳结构的PMs在大量稀释时表现出优异的稳定性,并且在不同pH值的溶液中具有良好的pH响应可逆性。P(PEGMA-AEMA)-PDMAEMA具有最低的临界胶束浓度(CMC)值(0.0041 mg/mL)、最高的载药量(13.86%)和包封率(97.03%)。在pH 7.4时药物缓慢持续释放,108小时内释放12.36%,而在pH 5.0时观察到快速释放(42.36%)。此外,采用耗散粒子动力学(DPD)模拟方法研究了PMs的自组装过程和pH响应行为。通过分析嵌段共聚物自组装过程中胶束的药物分布和形态,确定了最佳药物-载体比例(2%)和水的比例(92%)。模拟结果与实验结果一致,表明DPD模拟在研究可逆交联胶束的结构性质方面具有潜力。本研究结果为开发具有良好结构稳定性和可控药物释放性能的智能药物递送系统提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7f8/10518665/ffc644448522/d3ra05575b-s1.jpg

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