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一种通过手动摇晃实现生物医用聚合物在水中即刻溶解的协调策略。

A coordination strategy to achieve instant dissolution of a biomedical polymer in water manual shaking.

机构信息

State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Fudan University, Shanghai 200438, China.

出版信息

Biomater Sci. 2022 Aug 9;10(16):4561-4575. doi: 10.1039/d2bm00814a.

Abstract

Organic polymers with condensed long chains show slow dissolution kinetics in solvents, particularly in water, which has significantly hindered their potential applications where their instant dissolution without any assistance of a stirring machine, . is required. Herein, we put forward a strategy of rapid dissolution of chain-like polymers by coordinating with small molecular additives, using a thermogellable amphiphilic copolymer and CaCl for demonstration. We synthesized a block copolymer of poly(ethylene glycol) (PEG) and poly(lactide--glycolide) (PLGA) and prepared its powder after coordinating with calcium ions. Compared to the virgin copolymer, the composite was dissolved in water at a rate of over 10 fold, and simple manual shaking for half a minute could form its aqueous solution. Chelation using sodium citrate was further suggested to alleviate the possible biocompatibility problem caused by calcium ions. Finally, the potential application of the thermogels prepared by the rapid dissolution strategy for an instant use in hospitals was demonstrated in an porcine model of a fluid cushion for endoscopic submucosal dissection. The mechanism was discussed, and the critical factor comes from the coordination between calcium ions and the PEG block in the copolymer. The strategy to introduce a solvable small molecular additive coordinated with the polymer chain at the molecular level is helpful for accelerating the dissolution of organic polymers in a solvent to a large extent.

摘要

具有缩合长链的有机聚合物在溶剂中表现出缓慢的溶解动力学,特别是在水中,这极大地阻碍了它们在某些需要即时溶解而无需任何搅拌设备辅助的潜在应用。在此,我们提出了一种通过与小分子添加剂配位来快速溶解链状聚合物的策略,以热凝胶两亲性共聚物和 CaCl2 为例进行说明。我们合成了聚乙二醇(PEG)和聚(乳酸-共-乙醇酸)(PLGA)的嵌段共聚物,并在配位钙离子后制备了其粉末。与原始共聚物相比,复合物在水中的溶解速度提高了 10 倍以上,只需简单地手动摇晃半分钟即可形成其水溶液。进一步建议使用柠檬酸钠进行螯合,以减轻可能由钙离子引起的生物相容性问题。最后,在猪内镜黏膜下剥离用流体垫模型中,证明了通过快速溶解策略制备的热凝胶在医院即时使用的潜在应用。讨论了其机制,关键因素来自于共聚物中钙离子与 PEG 链之间的配位。在分子水平上引入可溶小分子添加剂与聚合物链配位的策略有助于在很大程度上加速有机聚合物在溶剂中的溶解。

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