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光化学交联可溶性羊毛角蛋白可产生机械稳定的生物材料,支持细胞黏附和增殖。

Photochemical crosslinking of soluble wool keratins produces a mechanically stable biomaterial that supports cell adhesion and proliferation.

机构信息

CSIRO Livestock Industries, Queensland Bioscience Precinct, St Lucia, QLD 4067, Australia.

出版信息

J Biomed Mater Res A. 2010 Dec 1;95(3):901-11. doi: 10.1002/jbm.a.32913.

Abstract

Keratins extracted from various "hard tissues" such as wool, hair, and nails are increasingly being investigated as a source of abundant, biocompatible materials. In this study we explored a recent photochemical method to crosslink solubilized wool keratoses, with the aim of producing a mechanically favorable biomaterial. Wool proteins were isolated by oxidizing the disulfides and extracting the resulting soluble keratoses. The α- and γ-keratose fractions were analyzed by liquid chromatography-mass spectrometry to identify their constituent proteins. Hydrogels were produced by covalent crosslinking of the α-keratoses via a photo-oxidative process catalyzed by blue light, a ruthenium complex, and persulfate. The presence of dityrosine crosslinks was demonstrated by high performance liquid chromatography and mass spectrometry analyses. The crosslinked α-keratose material had moderate tensile strength and elasticity, and high adhesive strength. The material displayed modest shrinking after crosslinking, however the shrinking could be prevented by crosslinking in the presence of 2.5% glycerol, resulting in gels that did not shrink or swell. Small solutes such as Tris and glycerol influenced the crosslink density and elastic modulus of the crosslinked material. The α-keratose was able to support adhesion and growth of NIH/3T3 fibroblasts in vitro. The fabrication of mechanically stable keratin biomaterials by this facile photo-crosslinking method may be useful for various tissue engineering applications.

摘要

从各种“硬组织”(如羊毛、头发和指甲)中提取的角蛋白越来越多地被研究为丰富、生物相容材料的来源。在这项研究中,我们探索了一种新的光化学交联方法,以交联溶解的羊毛角蛋白,旨在生产具有良好机械性能的生物材料。羊毛蛋白通过氧化二硫键并提取所得的可溶性角蛋白来分离。通过液相色谱-质谱分析对α-和γ-角蛋白进行分析,以鉴定其组成蛋白。通过光氧化过程,α-角蛋白在蓝光、钌配合物和过硫酸盐的催化下发生共价交联,生成水凝胶。通过高效液相色谱和质谱分析证明存在二酪氨酸交联。交联的α-角蛋白材料具有适中的拉伸强度和弹性,以及较高的粘附强度。然而,交联后材料会适度收缩,如果在 2.5%甘油存在下交联,可以防止收缩,从而得到不会收缩或膨胀的凝胶。小分子(如 Tris 和甘油)会影响交联材料的交联密度和弹性模量。α-角蛋白能够支持 NIH/3T3 成纤维细胞在体外的黏附和生长。通过这种简单的光交联方法制备机械稳定的角蛋白生物材料,可能对各种组织工程应用有用。

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