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两亲性羧甲基-己酰壳聚糖水凝胶的合成与表征:保水能力和药物包封

Synthesis and characterization of amphiphatic carboxymethyl-hexanoyl chitosan hydrogel: water-retention ability and drug encapsulation.

作者信息

Liu Tse-Ying, Chen San-Yuan, Lin Yi-Ling, Liu Dean-Mo

机构信息

Department of Materials Science and Engineering, National Chiao Tung University, 1001 Ta-hsueh Road, Hsinchu, Taiwan, Republic of China.

出版信息

Langmuir. 2006 Nov 7;22(23):9740-5. doi: 10.1021/la061471n.

Abstract

Carboxymethyl-hexanoyl chitosan (NOCHC) amphiphatic hydrogel with excellent water-absorption and water-retention abilities under neutral conditions was successfully synthesized for the first time and then employed as a carrier for delivering amphiphatic agents. NOCHC is a water-soluble chitosan derivative bearing the carboxymethyl (hydrophilic) group and the hexanoyl (hydrophobic) group, which was synthesized using N,O-carboxymethyl chitosan (NOCC) as the starting precursor. Water-absorption ability (W(c)), water-retention ability, and drug encapsulation efficiency of the NOCHC hydrogel were investigated in terms of the degree of carboxymethyl and hexanoyl substitution. It was found that the amount of moisture uptake was dependent on the relative humidity as well as degree and nature of such substitution. The hexanoyl substitution affected significantly the water-absorption ability by altering the number of water-binding sites and the state of water under low humidity and the fully swollen state, respectively. In addition, the presence of hydrophobic hexanoyl substitution significantly retards water mobility during deswelling, causing better water-retention ability. Moreover, compared with that of pristine chitosan and NOCC, the encapsulation efficiency of ibuprofen (partially hydrophobic agent) was significantly enhanced with the incorporation of the hexanoyl group. These results demonstrate that the newly developed NOCHC amphiphatic hydrogel showed enhanced water-absorption ability, water-retention ability, and amphiphatic drug encapsulation efficiency compared with NOCC and chitosan.

摘要

首次成功合成了在中性条件下具有优异吸水和保水能力的羧甲基 - 己酰壳聚糖(NOCHC)两亲性水凝胶,并将其用作两亲性药物递送载体。NOCHC是一种带有羧甲基(亲水)基团和己酰(疏水)基团的水溶性壳聚糖衍生物,它是以N,O - 羧甲基壳聚糖(NOCC)为起始前体合成的。根据羧甲基和己酰基取代度研究了NOCHC水凝胶的吸水能力(W(c))、保水能力和药物包封效率。结果发现,吸湿量取决于相对湿度以及这种取代的程度和性质。己酰基取代分别通过改变低湿度下的水结合位点数量和水的状态以及完全溶胀状态,对吸水能力产生显著影响。此外,疏水性己酰基取代的存在显著阻碍了溶胀过程中的水迁移,从而具有更好的保水能力。而且,与原始壳聚糖和NOCC相比,布洛芬(部分疏水药物)的包封效率随着己酰基的引入而显著提高。这些结果表明,新开发的NOCHC两亲性水凝胶与NOCC和壳聚糖相比,具有增强的吸水能力、保水能力和两亲性药物包封效率。

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