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可降解、温敏、pH 值敏感和氧化还原敏感的水凝胶微胶囊,用于药物的爆发式和持续释放。

Degradable, thermo-, pH- and redox-sensitive hydrogel microcapsules for burst and sustained release of drugs.

机构信息

Faculty of Chemistry, Biological and Chemical Research Center, University of Warsaw, 101 Żwirki i Wigury Av., PL 02-089 Warsaw, Poland.

Faculty of Chemistry, Biological and Chemical Research Center, University of Warsaw, 101 Żwirki i Wigury Av., PL 02-089 Warsaw, Poland; Faculty of Chemistry, Warsaw University of Technology, 3 Noakowskiego Av., PL 00-664 Warsaw, Poland.

出版信息

Int J Pharm. 2019 Oct 5;569:118589. doi: 10.1016/j.ijpharm.2019.118589. Epub 2019 Aug 3.

Abstract

Polymer microcapsules offer a possibility of storing increased amounts of drugs. Appropriate design and composition of the microcapsules allow tuning of the drug-release process. In this paper, we report on synthesis of hydrogel microcapsules sensitive to temperature and pH and degradable by glutathione and hydrogen peroxide. Microcapsules were based on thermo-responsive poly(N-isopropylacrylamide) and degradable cystine crosslinker, and were synthesized by applying precipitation polymerization. Such way of polymerization was appropriately modified to limit the crosslinking in the microcapsule center. This led to a possibility of washing out the pNIPA core at room temperature and the formation of a capsule. Microcapsules revealed rather high drug-loading capacity of ca. 17%. The degradation of the microcapsules by the reducing agent (GSH) and the oxidizing agent (HO) was confirmed by using the DLS, UV-Vis, SEM and TEM techniques. Depending on pH and concentration of the reducing/oxidizing agents a fast or slow degradation of the microcapsules and a burst or long-term release of doxorubicin (DOX) were observed. The DOX loaded microcapsules appeared to be cytotoxic against A2780 cancer cells similarly to DOX alone, while unloaded microcapsules did not inhibit proliferation of the cells.

摘要

聚合物微胶囊提供了储存更多药物的可能性。通过适当的设计和组成,可以调整药物释放过程。在本文中,我们报告了对温度和 pH 敏感且可通过谷胱甘肽和过氧化氢降解的水凝胶微胶囊的合成。微胶囊基于热响应性聚(N-异丙基丙烯酰胺)和可降解的胱氨酸交联剂,并通过沉淀聚合合成。这种聚合方式经过适当修改,以限制微胶囊中心的交联。这使得在室温下洗出 pNIPA 核并形成胶囊成为可能。微胶囊显示出约 17%的高载药量。通过 DLS、UV-Vis、SEM 和 TEM 技术证实了还原剂 (GSH) 和氧化剂 (HO) 对微胶囊的降解。根据还原/氧化试剂的 pH 值和浓度,观察到微胶囊的快速或缓慢降解以及阿霉素 (DOX) 的爆发或长期释放。负载 DOX 的微胶囊对 A2780 癌细胞的细胞毒性与单独的 DOX 相似,而未负载的微胶囊则不会抑制细胞的增殖。

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