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通过共价固定胶原蛋白对不锈钢材料进行表面工程处理以提高植入物的生物相容性。

Surface engineering of stainless steel materials by covalent collagen immobilization to improve implant biocompatibility.

作者信息

Müller Rainer, Abke Jochen, Schnell Edith, Macionczyk Frank, Gbureck Uwe, Mehrl Robert, Ruszczak Zbigniev, Kujat Richard, Englert Carsten, Nerlich Michael, Angele Peter

机构信息

Institute of Physical and Theoretical Chemistry, University of Regensburg, Germany.

出版信息

Biomaterials. 2005 Dec;26(34):6962-72. doi: 10.1016/j.biomaterials.2005.05.013.

Abstract

It was shown recently that the deposition of thin films of tantalum and tantalum oxide enhanced the long-term biocompatibility of stainless steel biomaterials due to an increase in their corrosion resistance. In this study, we used this tantalum oxide coating as a basis for covalent immobilization of a collagen layer, which should result in a further improvement of implant tissue integration. Because of the high degradation rate of natural collagen in vivo, covalent immobilization as well as carbodiimide induced cross-linking of the protein was performed. It was found that the combination of the silane-coupling agent aminopropyl triethoxysilane and the linker molecule N,N'-disulphosuccinimidyl suberate was a very effective system for collagen immobilizing. Mechanical and enzymatic stability testing revealed a higher stability of covalent bound collagen layers compared to physically adsorbed collagen layers. The biological response induced by the surface modifications was evaluated by in vitro cell culture with human mesenchymal stem cells as well as by in vivo subcutaneous implantation into nude mice. The presence of collagen clearly improved the cytocompatibility of the stainless steel implants which, nevertheless, significantly depended on the cross-linking degree of the collagen layer.

摘要

最近的研究表明,钽和氧化钽薄膜的沉积提高了不锈钢生物材料的长期生物相容性,这是由于它们的耐腐蚀性增强。在本研究中,我们使用这种氧化钽涂层作为共价固定胶原层的基础,这应该会进一步改善植入物与组织的整合。由于天然胶原蛋白在体内的降解率很高,因此进行了共价固定以及碳二亚胺诱导的蛋白质交联。发现硅烷偶联剂氨丙基三乙氧基硅烷和连接分子N,N'-二硫代琥珀酰亚胺基辛二酸酯的组合是一种非常有效的胶原固定系统。机械和酶稳定性测试表明,与物理吸附的胶原层相比,共价结合的胶原层具有更高的稳定性。通过用人间充质干细胞进行体外细胞培养以及将其皮下植入裸鼠体内来评估表面修饰诱导的生物学反应。胶原的存在明显改善了不锈钢植入物的细胞相容性,不过这在很大程度上取决于胶原层的交联程度。

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