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在超临界二氧化碳中,固体超强酸促进的糖基化的微波效应。

Microwave effect for glycosylation promoted by solid super acid in supercritical carbon dioxide.

机构信息

Division of Advanced Chemical Biology, Graduate School of Life Science, Hokkaido University, N21, W11, Sapporo 001-0021, Japan.

Department of Technical Engineering, Faculty of Science, Hokkaido University, N10, W8, Sapporo 060-0021, Japan.

出版信息

Int J Mol Sci. 2009 Dec 8;10(12):5285-5295. doi: 10.3390/ijms10125285.

Abstract

The effects of microwave irradiation (2.45 GHz, 200 W) on glycosylation promoted by a solid super acid in supercritical carbon dioxide was investigated with particular attention paid to the structure of the acceptor substrate. Because of the symmetrical structure and high diffusive property of supercritical carbon dioxide, microwave irradiation did not alter the temperature of the reaction solution, but enhanced reaction yield when aliphatic acceptors are employed. Interestingly, the use of a phenolic acceptor under the same reaction conditions did not show these promoting effects due to microwave irradiation. In the case of aliphatic diol acceptors, the yield seemed to be dependent on the symmetrical properties of the acceptors. The results suggest that microwave irradiation do not affect the reactivity of the donor nor promoter independently. We conclude that the effect of acceptor structure on glycosylation yield is due to electric delocalization of hydroxyl group and dielectrically symmetric structure of whole molecule.

摘要

微波辐射(2.45GHz,200W)对固态超强酸在超临界二氧化碳中促进的糖基化反应的影响进行了研究,特别关注了受体底物的结构。由于超临界二氧化碳具有对称结构和高扩散性能,微波辐射不会改变反应溶液的温度,但当使用脂肪族受体时,会提高反应产率。有趣的是,在相同的反应条件下使用酚类受体时,由于微波辐射,不会显示出这些促进作用。在脂肪二醇受体的情况下,产率似乎取决于受体的对称性质。结果表明,微波辐射不会独立影响供体和促进剂的反应性。我们得出结论,受体结构对糖基化产率的影响归因于羟基的电离域和整个分子的介电对称结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46fd/2801995/3c120a0c3839/ijms-10-05285f1.jpg

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