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新型 S 保护巯基化藻酸盐的合成及体外表征。

Synthesis and in vitro characterization of a novel S-protected thiolated alginate.

机构信息

Department of Pharmaceutical Technology, Institute of Pharmacy, University of Innsbruck, Innrain 80/82, 6020 Innsbruck, Austria.

Department of Pharmaceutical Chemistry, Institute of Pharmacy, University of Innsbruck, Innrain 80/82, 6020 Innsbruck, Austria.

出版信息

Carbohydr Polym. 2015 Jun 25;124:1-7. doi: 10.1016/j.carbpol.2015.01.049. Epub 2015 Feb 3.

Abstract

The object of this study was to synthesize and characterize a novel S-protected thiolated polymer with a high degree of modification. In this regard, an alginate-cysteine and an alginate-cysteine-2-mercaptonicotinic acid conjugate were synthesized. To achieve a high coupling rate of the thiol group bearing ligand cysteine to the polymer, the carbohydrate was activated by an oxidative ring opening with sodium periodate followed by a reductive amination to bind the primary amino group of cysteine to resulting reactive aldehyde groups. The obtained thiolated polymer displayed 1561±130μmol thiol groups per gram polymer. About one third of these thiol groups were S-protected by the implementation of a thiol bearing aromatic protection group via disulfide bond formation. Test tablets of both modified polymers showed improved stability against oxidation in aqueous environment compared to the unmodified alginate and exhibit higher water-uptake capacity. Rheological investigations revealed an increased viscosity of the S-protected thiolated polymer whereat the thiolated non S-protected polymer showed gelling properties after the addition of hydrogen peroxide. The mucoadhesive properties could be improved significantly for both derivatives and no alteration in biocompatibility tested on Caco-2 cell monolayer employing an MTT assay could be detected after modification. According to these results, both new derivatives seem promising for various applications.

摘要

本研究的目的是合成和表征一种具有高度修饰度的新型 S-保护硫醇化聚合物。在这方面,合成了一种藻酸盐-半胱氨酸和一种藻酸盐-半胱氨酸-2-巯基烟酸缀合物。为了实现硫醇基团载体半胱氨酸与聚合物的高偶联率,通过用高碘酸钠进行氧化开环,然后进行还原胺化,使碳水化合物与半胱氨酸的伯氨基结合到生成的反应性醛基上,从而激活了碳水化合物。所得的硫醇化聚合物每克聚合物显示出 1561±130μmol 的硫醇基团。其中约三分之一的硫醇基团通过形成含硫的芳族保护基团的二硫键来实现 S-保护。与未改性的藻酸盐相比,两种改性聚合物的测试片剂在水相环境中显示出更好的抗氧化稳定性,并且具有更高的吸水率。流变学研究表明,S-保护的硫醇化聚合物的粘度增加,而在添加过氧化氢后,硫醇化非 S-保护的聚合物显示出凝胶特性。两种衍生物的粘膜粘附性能都得到了显著改善,并且在用 MTT 测定法在 Caco-2 细胞单层上测试后,修饰后没有检测到生物相容性的改变。根据这些结果,这两种新的衍生物似乎都非常适合各种应用。

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