Evaluation of collagen crosslinking techniques.

K Weadock, R M Olson, F H Silver
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引用次数: 323

Abstract

The properties of collagen films crosslinked by physical and chemical techniques were compared to the properties of films crosslinked with glutaraldehyde (GTA). Physical techniques studied include exposure to short wave (254 nm) u.v. irradiation and severe dehydration. Chemical techniques studied include immersion of collagen films in aqueous solutions of cyanamide or GTA. Collagen films exposed to combinations of aqueous solutions of cyanamide and severe dehydration had moduli of elasticity, swelling ratios and resistance to bacterial collagenase similar to films crosslinked with GTA. Theoretical calculations based on amino acid composition indicate that approximately seven times as many amino acid residues are capable of forming crosslinks using cyanamide or severe dehydration procedures as compared to GTA crosslinking. In addition, using severe dehydration or cyanamide forms crosslinks involving both amino and carboxyl residues which may allow these procedures to act synergistically. Based on our studies this two-step procedure effectively crosslinks collagen-based biomaterials while the only by-product of this reaction is water-soluble urea. Preliminary biocompatibility studies suggest that this crosslinking procedure may allow for pronounced tissue ingrowth.

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胶原交联技术的评价。
比较了用物理和化学方法交联的胶原膜与戊二醛交联的胶原膜的性能。研究的物理技术包括暴露于短波(254纳米)紫外线照射和严重脱水。所研究的化学技术包括将胶原膜浸泡在氰胺或GTA的水溶液中。暴露于氰酰胺水溶液和严重脱水组合中的胶原膜具有弹性模量、溶胀比和对细菌胶原酶的抗性,类似于与GTA交联的膜。基于氨基酸组成的理论计算表明,与GTA交联相比,使用氰酰胺或严重脱水程序形成交联的氨基酸残基大约是其7倍。此外,使用严重脱水或氰酰胺形成涉及氨基和羧基残基的交联,这可能使这些程序协同作用。根据我们的研究,这两步程序有效地交联胶原基生物材料,而该反应的唯一副产物是水溶性尿素。初步的生物相容性研究表明,这种交联过程可能允许明显的组织向内生长。
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