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用于组织工程的明胶静电纺丝——分子构象作为一个被忽视的问题之一。

Electrospinning of gelatin for tissue engineering--molecular conformation as one of the overlooked problems.

作者信息

Sajkiewicz P, Kołbuk D

机构信息

a Institute of Fundamental Technological Research , Polish Academy of Sciences , Pawinskiego 5B, 02-106 Warsaw , Poland.

出版信息

J Biomater Sci Polym Ed. 2014;25(18):2009-22. doi: 10.1080/09205063.2014.975392. Epub 2014 Oct 30.

Abstract

Gelatin is one of the most promising materials in tissue engineering as a scaffold component. This biopolymer indicates biocompatibility and bioactivity caused by the existence of specific amino acid sequences, being preferred sites for interactions with cells, with high similarity to natural extracellular matrix. The present paper does not aspire to be a full review of electrospinning of gelatin and gelatin containing nanofibers as scaffolds in tissue engineering. It is focused on the still open question of the role of the higher order structures of gelatin in scaffold's bioactivity/functionality. Gelatin molecules can adopt various conformations depending on temperature, solvent, pH, etc. Our review indicates the potential ways for formation of α-helix conformation during electrospinning and the methods of further structure stabilization. It is intuitively expected that the native α-helix conformation appearing as a result of partial renaturation of gelatin can be beneficial from the viewpoint of bioactivity of scaffolds, providing thus a much cheaper alternative approach as opposed to expensive electrospinning of native collagen.

摘要

明胶作为一种支架成分,是组织工程中最具前景的材料之一。这种生物聚合物因其特定氨基酸序列的存在而具有生物相容性和生物活性,这些序列是与细胞相互作用的优选位点,与天然细胞外基质高度相似。本文并不旨在全面综述明胶和含明胶纳米纤维作为组织工程支架的静电纺丝。它关注的是明胶高阶结构在支架生物活性/功能方面作用这一仍未解决的问题。明胶分子可根据温度、溶剂、pH值等采取各种构象。我们的综述指出了静电纺丝过程中形成α-螺旋构象的潜在途径以及进一步稳定结构的方法。直观地预期,由于明胶部分复性而出现的天然α-螺旋构象从支架生物活性的角度来看可能是有益的,从而提供了一种比昂贵的天然胶原蛋白静电纺丝便宜得多的替代方法。

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