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基于温敏/酸敏接枝共聚物海藻酸钠-g-P(NIPAM-co-NHMAM)的双重响应水凝胶用于药物控制释放。

Dual responsive aerogel made from thermo/pH sensitive graft copolymer alginate-g-P(NIPAM-co-NHMAM) for drug controlled release.

机构信息

State Key Laboratory of Marine Resource Utilization in South China Sea, College of Materials and Chemical Engineering, Hainan University, Haikou 570228, PR China.

State Key Laboratory of Marine Resource Utilization in South China Sea, College of Materials and Chemical Engineering, Hainan University, Haikou 570228, PR China; Qiongtai Normal University, Haikou 571127, PR China.

出版信息

Int J Biol Macromol. 2018 Jul 15;114:1338-1344. doi: 10.1016/j.ijbiomac.2018.03.166. Epub 2018 Mar 28.

Abstract

Alginate was grafted with NIPAM and NHMAM successfully, and a new responsive copolymer, alginate-g-P(NIPAM-co-NHMAM), was obtained. A novel dual responsive polysaccharide-based aerogel with thermo/pH sensitive properties was designed from the copolymer as drug controlled release system. The chemical structure of the copolymer was characterized by FT-IR and H NMR. Lower critical solution temperature (LCST) of the copolymer covered a wide temperature range from 27.6 °C to 42.2 °C, which could be adjusted with changing the ratio between NIPAM and NHMAM. The dual responsive aerogel had a three-dimensional network structure. As a drug controlled release system, the aerogel was high responsive to both temperature and pH with drug loading efficiency up to 13.24%. Above LCST, the aerogel had a faster drug release, and drug was completely released in neutral environment, while the drug release was obstructed in acid environment. Furthermore, the drug release mechanism of the aerogel was illuminated. These results indicated that the dual responsive aerogel was a promising candidate for drug carriers.

摘要

成功地将海藻酸钠接枝到 NIPAM 和 NHMAM 上,得到了一种新的响应性共聚物,海藻酸钠-g-P(NIPAM-co-NHMAM)。从共聚物设计了一种具有热/pH 双重响应特性的新型多糖基气凝胶作为药物控制释放体系。通过傅里叶变换红外光谱(FT-IR)和核磁共振氢谱(H NMR)对共聚物的化学结构进行了表征。共聚物的低临界溶液温度(LCST)覆盖了从 27.6°C 到 42.2°C 的较宽温度范围,通过改变 NIPAM 和 NHMAM 的比例可以调节 LCST。双响应气凝胶具有三维网络结构。作为药物控制释放体系,该气凝胶对温度和 pH 均具有高响应性,载药效率高达 13.24%。在 LCST 以上时,气凝胶具有更快的药物释放速度,并且在中性环境中药物完全释放,而在酸性环境中药物释放受到阻碍。此外,还阐明了气凝胶的药物释放机制。这些结果表明,双响应性气凝胶是一种有前途的药物载体候选物。

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