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皱波角叉菜和杉藻中的卡拉胶:用于药物控制释放的结构分析和聚电解质复合物形成。

Carrageenans from Sarcothalia crispata and Gigartina skottsbergii: Structural Analysis and Interpolyelectrolyte Complex Formation for Drug Controlled Release.

机构信息

Centro de Recursos Naturales Renovables de la Zona Semiárida (CERZOS) CONICET-UNS, Camino La Carrindanga Km 7, 8000, Bahía Blanca, Argentina.

Departamento de Biología, Bioquímica y Farmacia, Universidad Nacional del Sur, San Juan 670, 8000, Bahía Blanca, Argentina.

出版信息

Mar Biotechnol (NY). 2018 Dec;20(6):706-717. doi: 10.1007/s10126-018-9842-4. Epub 2018 Jul 9.

Abstract

The aims of the present study were to characterize for the first time the carrageenan extracted from cystocarpic stage of S. crispata collected in the Patagonian coast of Argentina, and to prepare interpolyelectrolytic complexes (IPECs) between the polysaccharide extracted from cystocarpic stage of Sarcothalia crispata and Gigartina skottsbergii thalli, and basic butylated methacrylate copolymer (Eudragit E), in order to test their potential for the controlled release of ibuprofen as model drug. The structural determination revealed that the polysaccharides extracted from S. crispata and G. skottsbergii were mainly constituted by κ-carrageenan, particularly in the case of G. skottsbergii; however, significant amounts of ι- and ν-carrageenan were also detected in both polygalactans. The differences in diad composition and possibly in their distribution along the polysaccharide chain of both carrageenans would favor a different arrangement in the resulting IPEC structure. The smaller pores observed by scanning electron microscopy in the IPEC of S. crispata suggest that the kinks in the polysaccharide backbone are evenly distributed, resulting in a slower ibuprofen release compared to the IPEC of G. skottsbergii.

摘要

本研究的目的是首次对从阿根廷巴塔哥尼亚海岸采集的石花菜囊果期提取的卡拉胶进行表征,并制备石花菜囊果期多糖与巨藻藻体之间的聚电解质复合物(IPEC),以及基本的丁基甲基丙烯酸盐共聚物(Eudragit E),以测试其作为模型药物的布洛芬控释潜力。结构测定表明,从石花菜和巨藻中提取的多糖主要由 κ-卡拉胶组成,特别是在巨藻中;然而,两种半乳糖聚糖中也检测到了相当数量的 ι-和 ν-卡拉胶。两种卡拉胶中双糖单元组成的差异,以及其在多糖链上的分布情况,可能会影响形成的 IPEC 结构的排列方式。扫描电子显微镜观察到石花菜 IPEC 中的较小孔隙表明,多糖主链中的拐点均匀分布,导致与巨藻 IPEC 相比,布洛芬的释放速度较慢。

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