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A Direct Sulfation Process of a Marine Polysaccharide in Ionic Liquid

机译:离子液体中海洋多糖的直接硫酸化工艺

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摘要

GY785 is an exopolysaccharide produced by a mesophilic bacterial strain Alteromonas infernus discovered in the deep-sea hydrothermal vents. GY785 highly sulfated derivative (GY785 DRS) was previously demonstrated to be a promising molecule driving the efficient mesenchymal stem cell chondrogenesis for cartilage repair. This glycosaminoglycan- (GAG-) like compound was modified in a classical solvent (N,N′-dimethylformamide). However, the use of classical solvents limits the polysaccharide solubility and causes the backbone degradation. In the present study, a one-step efficient sulfation process devoid of side effects (e.g., polysaccharide depolymerization and/or degradation) was developed to produce GAG-like derivatives. The sulfation of GY785 derivative (GY785 DR) was carried out using ionic liquid as a reaction medium. The successful sulfation of this anionic and highly branched heteropolysaccharide performed in ionic liquid would facilitate the production of new molecules of high specificity for biological targets such as tissue engineering or regenerative medicine.
机译:GY785是在深海热液喷口中发现的嗜温细菌菌株Alteromonas infernus产生的胞外多糖。 GY785高硫酸化衍生物(GY785 DRS)先前已被证明是一种有前途的分子,可驱动有效的间充质干细胞软骨生成进行软骨修复。该类糖胺聚糖-(GAG-)化合物在经典溶剂(N,N'-二甲基甲酰胺)中进行了修饰。但是,传统溶剂的使用限制了多糖的溶解度并导致主链降解。在本研究中,开发了一种没有副作用(例如,多糖解聚和/或降解)的一步有效的硫酸化方法,以产生类GAG的衍生物。使用离子液体作为反应介质进行GY785衍生物(GY785 DR)的硫酸化。在离子液体中成功进行这种阴离子和高度支化的杂多糖的硫酸化,将有助于生产对生物学目标(例如组织工程或再生医学)具有高度特异性的新分子。

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