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首页> 外文期刊>Current Organic Synthesis >Carbohydrate Chemistry and Room Temperature Ionic Liquids (RTILs):Recent Trends, Opportunities, Challenges and Future Perspectives
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Carbohydrate Chemistry and Room Temperature Ionic Liquids (RTILs):Recent Trends, Opportunities, Challenges and Future Perspectives

机译:碳水化合物化学与室温离子液体(RTIL):最新趋势,机遇,挑战和未来展望

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Since past few decades, Room Temperature Ionic Liquids (RTILs) have extensively been used in organic synthesis as solvents, catalysts and catalyst/solvents in chemical as well as enzymatic reactions, whereas their interest in various different branches of science is expanding exponentially. RTILs show an enhanced performance in a number of syntheses involving carbohydrates when compared to the conventional organic solvents owing to their very interesting and attractive features,-viz. simple handling, high yield, less reaction time, benign environmental character, ease of synthesis and excellent recyclability. Carbohydrates are not known only for their vital commercial applications as foods, drugs and chemical feed stocks etc., but sugar based molecules are also identified to play pivotal roles in various pathologically and physiologically important biological processes including cellular recognition, adhesion, migration, invasion, communication, bacterial/viral infection, tumor metastasis etc. The clear understanding of role of sugars in these important biological events has led to the increased demand for significant amounts of carbohydrate based molecules for complete chemical, biological, medicinal, and pharmacological investigations. Therefore, tremendous efforts have been made to develop novel and facile procedures for the synthesis of sugar based molecules of great biological interest and their modification. With an increasing focus on the glycomics, the RTILs solvent may offer promising solutions in carbohydrate chemistry. However, there is lack of recent and concise reports dealing with the RTILs in the field of carbohydrate chemistry particularly, in relevance to dissolution and functionalization, and their further modifications including glycosylation. This review highlights the application of RTILs that have been extensively used in carbohydrate chemistry.
机译:自从过去的几十年以来,室温离子液体(RTIL)已广泛用于有机合成中,作为化学,酶促反应中的溶剂,催化剂和催化剂/溶剂,而它们在科学的各个不同领域的兴趣正呈指数增长。与常规有机溶剂相比,RTILs在许多涉及碳水化合物的合成中表现出增强的性能,这是由于它们具有非常有趣和有吸引力的特性。操作简单,收率高,反应时间短,良好的环境特性,易于合成和优异的可回收性。碳水化合物不仅因其在食品,药品和化学原料等方面的重要商业应用而广为人知,而且糖基分子还被确定在各种病理和生理上重要的生物学过程中起着关键作用,包括细胞识别,粘附,迁移,侵袭,对糖在这些重要的生物学事件中的作用的清楚了解导致对大量基于碳水化合物的分子进行完整的化学,生物学,药物和药理学研究的需求增加。因此,已经做出巨大的努力来开发新颖且容易的方法以合成具有重大生物学意义的糖基分子及其修饰。随着对糖组学的日益关注,RTILs溶剂可能在碳水化合物化学中提供有前途的解决方案。然而,缺乏关于碳水化合物化学领域中的RTIL的最新和简洁的报道,特别是关于溶解和功能化以及它们的进一步修饰包括糖基化的领域。这篇综述着重介绍了已在碳水化合物化学中广泛使用的RTIL的应用。

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