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壳聚糖:独一无二?胺化纤维素作为含伯胺基聚合物的创新选择。

Chitosan: The One and Only? Aminated Cellulose as an Innovative Option for Primary Amino Groups Containing Polymers.

出版信息

Biomacromolecules. 2018 Oct 8;19(10):4059-4067. doi: 10.1021/acs.biomac.8b01069. Epub 2018 Sep 20.

Abstract

The aim of this study was the synthesis and in vitro characterization of aminated cellulose as alternative excipient to chitosan. The aldehyde form of cellulose was generated via the oxidative cleavage of vicinal diols by the addition of increasing concentrations of sodium periodate. The insertion of primary amines was achieved by reductive amination with ammonia. The degree of substitution was calculated via primary amino group quantification using a 2,4,6-trinitrobenzenesulfonic acid assay. Mucoadhesiveness was examined by adopting the rotating-cylinder method and tensile studies using porcine intestinal mucosa. Hydration was evaluated at pH 2-11. The successful formation of aldehydes as well as a subsequent introduction of up to 311.61 micromoles per gram of primary amines were proven to correlate with the amount of added periodate. There was a 3- to 14-fold prolongation in the mucosal residence time of the new polymer in comparison to chitosan, as measured by the rotating-cylinder method. Although cationic cellulose did not reach the maximum detachment force of chitosan, the total work of adhesion of the newly synthesized cellulose derivate was higher than that of chitosan. The higher the degree of amination, the higher the degree of hydration in neutral and alkaline aqueous media was. Compared to chitosan, the novel cationic cellulose derivative displays improved mucoadhesive properties as well as sufficient hydration at physiological pH. Therefore, aminated cellulose is a promising alternative to the cationic polymers, such as chitosan, used thus far.

摘要

本研究旨在合成并对胺化纤维素进行体外特性分析,将其作为壳聚糖的替代赋形剂。通过加入不同浓度的高碘酸钠氧化裂解邻二醇,生成纤维素的醛基形式。采用氨的还原胺化法将伯胺插入。通过 2,4,6-三硝基苯磺酸测定法对伯氨基进行定量,计算取代度。采用旋转圆筒法考察黏膜黏附性,采用猪肠黏膜进行拉伸研究。在 pH 2-11 下评价水合作用。成功形成醛基以及随后引入高达 311.61 微摩尔/克的伯胺与加入的高碘酸钠量相关。与壳聚糖相比,新聚合物通过旋转圆筒法测量的黏膜停留时间延长了 3 到 14 倍。尽管阳离子纤维素未达到壳聚糖的最大脱离力,但新合成的纤维素衍生物的总黏附功高于壳聚糖。胺化程度越高,在中性和碱性水介质中的水合程度越高。与壳聚糖相比,新型阳离子纤维素衍生物具有更好的黏膜黏附性能,并且在生理 pH 值下具有足够的水合作用。因此,胺化纤维素是迄今为止使用的阳离子聚合物(如壳聚糖)的有前途的替代品。

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