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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Azocrosslinked poly(acrylic acid) for colonic delivery and adhesion specificity: in vitro degradation and preliminary ex vivo bioadhesion studies
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Azocrosslinked poly(acrylic acid) for colonic delivery and adhesion specificity: in vitro degradation and preliminary ex vivo bioadhesion studies

机译:偶氮交联的聚(丙烯酸)用于结肠递送和黏附特异性:体外降解和初步的体外生物黏附研究

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摘要

This study reports on the performance of a novel polymeric material that is capable of providing site specificity in active agent delivery and the development of mucoadhesive interactions. Ate-networks, based on an acrylic backbone crosslinked with 4,4'-divinylazobenzene, were subjected to in vitro degradation and mucoadhesion (before and after degradation) testing in order to model their performance in the gastrointestinal tract. Advanced surface characterisation techniques (SEM, AFM, FTIR microscopy) were used to examine the network morphology prior to, and after degradation. The data obtained from these studies indicate that there is an optimum crosslinking density to allow non-adhesive particles to reach the colon. Within the colonic environment, the ate network degrades to produce a structure capable of developing mucoadhesive interactions with the colonic mucosa. (C) 1998 Elsevier Science B.V. [References: 44]
机译:这项研究报告了一种新型聚合材料的性能,该材料能够在活性剂输送和粘膜粘附相互作用的发展中提供位点特异性。对基于4,4'-二乙烯基偶氮苯交联的丙烯酸骨架的Ate网络进行体外降解和粘膜粘附性(降解之前和之后)测试,以模拟其在胃肠道中的性能。先进的表面表征技术(SEM,AFM,FTIR显微镜)用于检查降解前后的网络形态。从这些研究中获得的数据表明,存在最佳的交联密度,以使非粘性颗粒能够到达结肠。在结肠环境中,饮食网络降解以产生能够发展与结肠粘膜的粘膜粘附相互作用的结构。 (C)1998 Elsevier Science B.V. [参考:44]

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