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制备温敏和 pH 响应接枝壳聚糖的可注射水凝胶,其胶凝温度可调,适用于肿瘤酸性环境。

Preparation of injectable hydrogels from temperature and pH responsive grafted chitosan with tuned gelation temperature suitable for tumor acidic environment.

机构信息

Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.

National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA), Pathum Thani 12120, Thailand.

出版信息

Carbohydr Polym. 2018 Oct 15;198:486-494. doi: 10.1016/j.carbpol.2018.06.099. Epub 2018 Jun 28.

Abstract

In this present work, stimuli responsive polymers that can respond to the temperature and pH of the environment were prepared. A series of temperature responsive diblock copolymers based on poly(ethylene glycol) methyl ether (mPEG) and ε-caprolactone (CL) were synthesized. Subsequently, the diblock copolymers were grafted onto chitosan, a pH responsive biopolymer. These chitosan-graft-(mPEG-block-PCL) (chitosan-g-(mPEG-b-PCL)) graft copolymers were structurally characterized by H NMR and FTIR and their sol-gel phase transitions were analyzed by the test tube inversion method as well as dynamic rheological measurements. These chitosan-g-(mPEG-b-PCL) graft copolymers demonstrated tunable temperature and pH responsive sol-gel phase transitions that correspond well with body temperature and pH of acidic tumor microenvironments. Gelation temperature (T) decreased with increasing pH of the system, increasing PCL composition in the diblock copolymers, increasing solution concentration and decreasing grafting content of the diblock copolymers on chitosan. The graft copolymer hydrogels successfully showed the sustained release of both doxorubicin and curcumin for up to 2 weeks. The designed system was based on chitosan-g-(mPEG-b-PCL) graft copolymers, of which chitosan showed pH responsive properties and mPEG-b-PCL acted as a temperature sensitive moiety. In addition, mPEG and PCL are recognized as biocompatible polymers and chitosan has been engaged in various pharmaceutical research. Thus, this system could be considered an alternative choice for drug delivery applications.

摘要

在本工作中,制备了能够响应环境温度和 pH 值的刺激响应聚合物。合成了一系列基于聚乙二醇甲醚(mPEG)和ε-己内酯(CL)的温度响应性两亲性嵌段共聚物。随后,将两亲性嵌段共聚物接枝到壳聚糖上,壳聚糖是一种 pH 响应性生物聚合物。通过 1H NMR 和 FTIR 对壳聚糖接枝-(mPEG 嵌段-PCL)(chitosan-g-(mPEG-b-PCL))接枝共聚物进行了结构表征,并通过试管倒置法和动态流变学测量分析了其溶胶-凝胶相转变。这些壳聚糖接枝-(mPEG-b-PCL)接枝共聚物表现出可调的温度和 pH 响应溶胶-凝胶相转变,与体温和酸性肿瘤微环境的 pH 值相吻合。凝胶温度(T)随体系 pH 值的升高而降低,嵌段共聚物中 PCL 组成的增加、溶液浓度的增加和嵌段共聚物在壳聚糖上接枝含量的降低。接枝共聚物水凝胶成功地实现了阿霉素和姜黄素的持续释放,长达 2 周。设计的系统基于壳聚糖接枝-(mPEG-b-PCL)接枝共聚物,壳聚糖表现出 pH 响应特性,mPEG-b-PCL 作为温度敏感部分。此外,mPEG 和 PCL 被认为是生物相容性聚合物,壳聚糖已被用于各种药物研究。因此,该系统可被视为药物输送应用的替代选择。

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