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通过将异源二聚体 BMP-2/6、纤连蛋白和 FGF-2 多生物功能化医学植入物表面,增强选择性细胞增殖。

Enhanced selective cellular proliferation by multi-biofunctionalization of medical implant surfaces with heterodimeric BMP-2/6, fibronectin, and FGF-2.

机构信息

Laboratory of Biophysics, Faculty of Applied Natural Sciences, Westphalian University of Applied Sciences, D-45665, Recklinghausen, Germany.

Inorganic Chemistry and Center for Nanointegration Duisburg-Essen (CeNIDE), Faculty of Chemistry, University of Duisburg-Essen, D-45141, Essen, Germany.

出版信息

J Biomed Mater Res A. 2018 Nov;106(11):2910-2922. doi: 10.1002/jbm.a.36480.

Abstract

Increasing cell adhesion on implant surfaces is an issue of high biomedical importance. Early colonization with endogenous cells reduces the risk of bacterial contamination and enhances the integration of an implant into the diverse cellular tissues surrounding it. In vivo integration of implants is controlled by a complex spatial and temporal interplay of cytokines and adhesive molecules. The concept of a multi-biofunctionalized TiO surface for stimulating bone and soft tissue growth is presented here. All supramolecular architectures were built with a biotin-streptavidin coupling system. Biofunctionalization of TiO with immobilized FGF-2 and heparin could be shown to selectively increase the proliferation of fibroblasts while immobilized BMP-2 only stimulated the growth of osteoblasts. Furthermore, TiO surfaces biofunctionalized with either the BMP-2 or BMP-2/6 growth factor and the cell adhesion-enhancing protein fibronectin showed higher osteoblast adhesion than a TiO surface functionalized with only one of these proteins. In conclusion, the presented immobilization strategy is applicable in vivo for a selective surface coating of implants in both hard and connective tissue. The combined immobilization of different extracellular proteins on implants has the potential to further influence cell-specific reactions. © 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 2910-2922, 2018.

摘要

提高植入物表面的细胞黏附力是一个具有高度生物医学重要性的问题。早期与内源性细胞定植可降低细菌污染的风险,并增强植入物与周围多样化细胞组织的整合。植入物的体内整合受细胞因子和黏附分子的复杂时空相互作用控制。本文提出了一种用于刺激骨和软组织生长的多功能化 TiO 表面的概念。所有超分子结构均采用生物素-链霉亲和素偶联系统构建。已经证明,用固定化 FGF-2 和肝素对 TiO 进行生物功能化可以选择性地增加成纤维细胞的增殖,而固定化 BMP-2 仅刺激成骨细胞的生长。此外,用 BMP-2 或 BMP-2/6 生长因子和细胞黏附增强蛋白纤连蛋白生物功能化的 TiO 表面的成骨细胞黏附率高于仅用其中一种蛋白质功能化的 TiO 表面。总之,所提出的固定化策略适用于体内,可选择性地对硬组织和结缔组织中的植入物进行表面涂层。不同细胞外蛋白在植入物上的组合固定化有可能进一步影响细胞特异性反应。© 2018 Wiley Periodicals, Inc. J 生物材料 Res 部分 A:106A:2910-2922,2018.

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