Dipartimento di Chimica, Laboratorio di Chimica Organica, Università di Ferrara, Via L. Borsari 46, 44100 Ferrara, Italy.
Chem Soc Rev. 2012 Jan 21;41(2):573-86. doi: 10.1039/c1cs15157f. Epub 2011 Jul 27.
There has been over the past decades a resurgence of the free-radical thiol-ene coupling (TEC) as a method for assembling crosslinked networks and polymer functionalization. On the other hand the use of TEC in carbohydrate chemistry, a field of special importance due to the key role of carbohydrates in living organisms, is represented only by a handful of papers. Nevertheless it appears that TEC possesses many if not all the attributes of a click process proceeding with the assistance of the greenest catalyst such as visible light. This tutorial review focuses on the application of TEC on different topics, all related to glycochemistry, including: (a) carbohydrate modification, (b) oligosaccharide and glycosyl amino acid synthesis, (c) assembly of glycoclusters on rigid molecular platforms (calixarene, cyclodextrin, silsesquioxane, dendrimer), (d) peptide and protein glycosylation. Also the very recent development in peptide glycosylation by the closely related thiol-yne chemistry is described.
在过去的几十年中,自由基硫醇-烯点击(TEC)作为一种用于组装交联网络和聚合物功能化的方法重新受到关注。另一方面,由于碳水化合物在生物体内的关键作用,TEC 在碳水化合物化学中的应用仅由少数几篇论文代表,尽管如此,TEC 似乎具有点击过程的许多(如果不是全部的话)属性,该过程在最环保的催化剂(如可见光)的帮助下进行。本教程综述重点介绍了 TEC 在不同主题上的应用,这些主题都与糖化学有关,包括:(a) 碳水化合物修饰,(b) 寡糖和糖基氨基酸合成,(c) 糖缀合物在刚性分子平台(杯芳烃、环糊精、硅倍半氧烷、树枝状大分子)上的组装,(d) 肽和蛋白质的糖基化。还描述了最近通过密切相关的硫醇-炔化学在肽糖基化方面的发展。