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多酚与纤维素和胶原蛋白疏水相互作用中的构效关系。

Structure-activity relationships in the hydrophobic interactions of polyphenols with cellulose and collagen.

作者信息

Tang H R, Covington A D, Hancock R A

机构信息

Department of Chemistry, Royal Holloway, University of London, Egham Hill, Egham, Surrey TW20 0EX, UK.

出版信息

Biopolymers. 2003 Oct;70(3):403-13. doi: 10.1002/bip.10499.

Abstract

Polyphenol interactions with both cellulose and collagen in the solid state have been studied by using chromatography on cellulose and by evaluating the hydrothermal stability of the polyphenol treated sheepskin collagen. Twenty-four polyphenolic compounds were studied, including seven glucose-based gallotannins, five polyalcohol-based gallotannins, and twelve ellagitannins. In the cellulose-polyphenols systems, the polyphenol's affinity to cellulose is positively correlated with their molecular masses, the number of galloyl groups, and their hydrophobicity (logP). The polyphenol treatment increased the hydrothermal stability of collagen samples, and such effects are also positively correlated with the molecular masses, total number of galloyl groups and the hydrophobicity of polyphenols. Ellagitannins showed much weaker interactions with both biopolymers than gallotannins having similar molecular mass, the same number of galloyl groups, and the same number of phenolic hydroxyl groups. It is concluded that, for the polyphenol interactions with both cellulose and collagen, (1) the galloyl group of polyphenols is the functional group; (2) the strength of interactions are positively correlated with molecular size, the number of galloyl groups and the hydrophobicity of polyphenols; (3) the hydrophobic interactions are of great significance; and (4) the interactions are strongly dependent on the flexibility of galloyl groups.

摘要

通过纤维素柱色谱法以及评估经多酚处理的绵羊皮胶原蛋白的水热稳定性,对固态下多酚与纤维素和胶原蛋白之间的相互作用进行了研究。研究了24种多酚化合物,包括7种基于葡萄糖的没食子单宁、5种基于多元醇的没食子单宁和12种鞣花单宁。在纤维素 - 多酚体系中,多酚对纤维素的亲和力与它们的分子量、没食子酰基的数量及其疏水性(logP)呈正相关。多酚处理提高了胶原蛋白样品的水热稳定性,并且这种影响也与多酚的分子量、没食子酰基的总数和疏水性呈正相关。与具有相似分子量、相同数量的没食子酰基和相同数量酚羟基的没食子单宁相比,鞣花单宁与这两种生物聚合物的相互作用要弱得多。得出的结论是,对于多酚与纤维素和胶原蛋白的相互作用,(1)多酚的没食子酰基是官能团;(2)相互作用的强度与多酚的分子大小、没食子酰基的数量和疏水性呈正相关;(3)疏水相互作用具有重要意义;(4)相互作用强烈依赖于没食子酰基的柔韧性。

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