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使用温度敏感聚合物(甲基纤维素)将海藻酸钠水溶液热凝胶化为pH敏感水凝胶的新方法。

Novel method using a temperature-sensitive polymer (methylcellulose) to thermally gel aqueous alginate as a pH-sensitive hydrogel.

作者信息

Liang Hsiang-Fa, Hong Min-Hao, Ho Rong-Ming, Chung Ching-Kuang, Lin Yu-Hsin, Chen Chun-Hung, Sung Hsing-Wen

机构信息

Department of Chemical Engineering, National Tsing Hua University, Hsinchu, Taiwan 30013, Republic of China.

出版信息

Biomacromolecules. 2004 Sep-Oct;5(5):1917-25. doi: 10.1021/bm049813w.

Abstract

A novel method using a temperature-sensitive polymer (methylcellulose) to thermally gel aqueous alginate blended with distinct salts (CaCl2, Na2HPO4, or NaCl), as a pH-sensitive hydrogel was developed for protein drug delivery. It was noted that the salts blended in hydrogels may affect the structures of an entangled network of methylcellulose and alginate and have an effect on their swelling characteristics. The methylcellulose/alginate hydrogel blended with 0.7 M NaCl (with a gelation temperature of 32 degrees C) demonstrated excellent pH sensitivity and was selected for the study of release profiles of a model protein drug (bovine serum albumin, BSA). In the preparation of drug-loaded hydrogels, BSA was well-mixed to the dissolved aqueous methylcellulose/alginate blended with salts at 4 degrees C and then gelled by elevating the temperature to 37 degrees C. This drug-loading procedure in aqueous environment at low temperature may minimize degradation of the protein drug while achieving a high loading efficiency (95-98%). The amount of BSA released from test hydrogels was a function of the amount of alginate used in the hydrogels. The amount of BSA released at pH 1.2 from the test hydrogel with 2.5% alginate was relatively low (20%), while that released at pH 7.4 increased significantly (86%). In conclusion, the methylcellulose/alginate hydrogel blended with NaCl could be a suitable carrier for site-specific protein drug delivery in the intestine.

摘要

开发了一种新方法,使用温度敏感聚合物(甲基纤维素)使与不同盐(氯化钙、磷酸氢二钠或氯化钠)混合的海藻酸钠水溶液热凝胶化,作为一种pH敏感水凝胶用于蛋白质药物递送。值得注意的是,混合在水凝胶中的盐可能会影响甲基纤维素和海藻酸钠缠结网络的结构,并对其溶胀特性产生影响。与0.7M氯化钠混合的甲基纤维素/海藻酸钠水凝胶(凝胶化温度为32℃)表现出优异的pH敏感性,并被选用于研究模型蛋白质药物(牛血清白蛋白,BSA)的释放曲线。在制备载药水凝胶时,将BSA在4℃下与溶解的与盐混合的甲基纤维素/海藻酸钠水溶液充分混合,然后通过将温度升高至37℃使其凝胶化。这种在低温水环境中的载药过程可以在实现高载药效率(95-98%)的同时,将蛋白质药物的降解降至最低。从测试水凝胶中释放的BSA量是水凝胶中海藻酸钠用量的函数。在pH1.2时,含2.5%海藻酸钠的测试水凝胶释放的BSA量相对较低(20%),而在pH7.4时释放量显著增加(86%)。总之,与氯化钠混合的甲基纤维素/海藻酸钠水凝胶可能是一种适合在肠道中进行位点特异性蛋白质药物递送的载体。

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