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基于聚天冬酰胺的用于细胞内递送的pH敏感两亲性可生物降解接枝共聚物聚集体

pH-sensitive amphiphilic biodegradable graft co-polymer aggregates based on polyaspartamide for intracellular delivery.

作者信息

Kim Jongbok, Kim Ji-Heung, Kim Dukjoon

机构信息

a School of Chemical Engineering, Theranostic Macromolecules Research Center, Sungkyunkwan University , Suwon , Kyunggi , 440-746 , South Korea.

出版信息

J Biomater Sci Polym Ed. 2012;23(10):1255-69. doi: 10.1163/092050611X577746. Epub 2012 May 11.

Abstract

A biodegradable, pH-sensitive amphiphilic co-polymer, o-(2-aminoethyl)-o'-methylpolyethylene glycol/1-(3-aminopropyl)imidazole/lactic acid oligomers-g-polyaspartamide (MPEG/API/LAs-g-PASPAM), was synthesized. The hydrophobic biodegradable poly (lactic acid) (PLA), the hydrophilic MPEG and the pH-sensitive API were successfully introduced into the biodegradable polysuccinimide (PSI) backbone by grafting. In its synthesis, the feed ratio of MPE to PLA was varied to provide different amphiphilic balances. FT-IR and (1)H-NMR spectroscopy were used to identify the chemical structure of the MPEG/API/LAs-g-PASPAM co-polymers synthesized. Tens to a few hundreds of nanometer-scaled aggregates, appropriate for intracellular drug-carrier applications, were developed in the simulated buffer solution, and their self-assembling behavior was significantly affected by the environmental pH. The size and morphology of self-aggregates were investigated using dynamic light scattering and transmission electron microscopy. The buffering effect was observed in the endosomal pH range. The drug loading and release experiments were conducted for a series of co-polymer aggregate systems, and it was noted that the release behavior was mostly governed by diffusion. The biodegradable kinetics was also studied to ascertain the drug-release mechanism.

摘要

合成了一种可生物降解的、对pH敏感的两亲共聚物,即邻-(2-氨基乙基)-邻'-甲基聚乙二醇/1-(3-氨丙基)咪唑/乳酸低聚物-g-聚天冬酰胺(MPEG/API/LAs-g-PASPAM)。通过接枝将疏水性可生物降解的聚乳酸(PLA)、亲水性MPEG和对pH敏感的API成功引入可生物降解的聚琥珀酰亚胺(PSI)主链中。在其合成过程中,改变MPE与PLA的进料比以提供不同的两亲平衡。使用傅里叶变换红外光谱(FT-IR)和氢核磁共振波谱(1H-NMR)来鉴定所合成的MPEG/API/LAs-g-PASPAM共聚物的化学结构。在模拟缓冲溶液中形成了尺寸为几十到几百纳米的聚集体,适合细胞内药物载体应用,并且它们的自组装行为受到环境pH的显著影响。使用动态光散射和透射电子显微镜研究了自聚集体的尺寸和形态。在内体pH范围内观察到了缓冲作用。对一系列共聚物聚集体系统进行了载药和释放实验,并且注意到释放行为主要受扩散控制。还研究了生物降解动力学以确定药物释放机制。

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