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天然胶原纤维和鞣制胶原纤维中水分的结构和动力学:交联的影响。

Structure and dynamics of water in native and tanned collagen fibers: Effect of crosslinking.

机构信息

Chemical Laboratory, Central Leather Research Institute, Council of Scientific and Industrial Research, Adyar, Chennai, India.

出版信息

Int J Biol Macromol. 2010 Dec 1;47(5):590-6. doi: 10.1016/j.ijbiomac.2010.08.003. Epub 2010 Aug 13.

Abstract

The influence of crosslinking on the hydration structure of collagen has been investigated. Nuclear magnetic resonance, dielectric relaxation and thermoporometry were used to investigate water structure in native and crosslinked collagen fibers on both wet and dried specimen. Measurements reveal the influence of different chemical treatments on the transverse relaxation time and polarization of the collagen fibers. The frequency dependence of dielectric constant of collagen fibers displays an induction behavior on low frequencies. Bound water constrained in collagen fibers seems to provide signatures for changes induced by crosslinking agents on the pore diameter and distribution in collagen fibers. A correlation of transverse relaxation time of water in dry and wet states presented in this study presents an experimental tool for examining the differences in efficacy of crosslinking agents. Changes in the dielectric relaxation, dynamics of water structure and hydroporometric structure of collagen are dependent on the nature of crosslinking material.

摘要

研究了交联对胶原蛋白水合结构的影响。使用核磁共振、介电松弛和热压法研究了天然和交联胶原纤维在湿态和干态样品中的水结构。测量结果揭示了不同化学处理对胶原纤维横向弛豫时间和极化的影响。胶原纤维介电常数的频率依赖性在低频下表现出感应行为。束缚在胶原纤维中的结合水似乎为交联剂在胶原纤维的孔径和分布上引起的变化提供了特征。本研究中呈现的干燥和湿润状态下水的横向弛豫时间的相关性提供了一种实验工具,用于检查交联剂效果的差异。胶原蛋白的介电弛豫、水结构动力学和水力压测定结构的变化取决于交联材料的性质。

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