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一种通过主客体络合作用形成的新型超分子凝胶,主体为葫芦[8]脲,客体为 N-(4-二乙氨基苄基)壳聚糖。

A new supramolecular gel via host-guest complexation with cucurbit[8]uril and N-(4-diethylaminobenzyl)chitosan.

机构信息

College of Pharmacy, Fujian Medical University, Fuzhou 350004, China.

出版信息

Carbohydr Polym. 2013 Jan 30;92(1):429-34. doi: 10.1016/j.carbpol.2012.09.027. Epub 2012 Sep 19.

Abstract

A novel supramolecular gel has been prepared via host-guest interaction between cucurbit[8]uril (Q[8]) and N-(4-diethylaminobenzyl)chitosan (EBCS). The structure of supramolecular gel has been characterized. The spectrum of (1)H NMR demonstrated the benzene ring of EBCS is reside inside the hydrophobic cavity of Q[8] and the host-guest interaction between Q[8] and EBCS was the main driving force for the formation of the supramolecular gel. The network structure of the xerogel of Q[8]/EBCS gel was observed by SEM. The Q[8]/EBCS gel system showed thermosensitive and pH-sensitive properties. The physical characterization by SEM, DSC, TG demonstrated the distinguished characters, which proved the formation of supramolecular gel instead of physical blending. The in vitro release study of the 5-fluorouracil-loaded supramolecular gel showed that sustained release profile in acidic condition, suggesting that Q[8]/EBCS gel could be a potential carrier for pH-sensitive drug controlled release system.

摘要

通过葫芦[8]脲(Q[8])和 N-(4-二乙氨基苄基)壳聚糖(EBCS)之间的主客体相互作用,制备了一种新型超分子凝胶。超分子凝胶的结构已得到表征。(1)H NMR 光谱表明 EBCS 的苯环位于 Q[8]的疏水性空腔内,Q[8]和 EBCS 之间的主客体相互作用是形成超分子凝胶的主要驱动力。SEM 观察到 Q[8]/EBCS 凝胶干凝胶的网络结构。Q[8]/EBCS 凝胶体系表现出温度和 pH 敏感性。SEM、DSC 和 TG 的物理特性分析证明了其独特的性质,这证明了超分子凝胶的形成而不是物理混合物。载有 5-氟尿嘧啶的超分子凝胶的体外释放研究表明,在酸性条件下具有持续释放的特点,表明 Q[8]/EBCS 凝胶可能是一种用于 pH 敏感药物控制释放系统的潜在载体。

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