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用肝素化胶原蛋白和骨诱导因子BMP-2对TiO(2)/玻璃复合材料Ecopore进行仿生修饰。

Biomimetic modification of the TiO(2)/glass composite Ecopore with heparinized collagen and the osteoinductive factor BMP-2.

作者信息

von Walter M, Herren C, Gensior T J, Steffens G C M, Hermanns-Sachweh B, Jahnen-Dechent W, Rüger M, Erli H J

机构信息

Clinic of Trauma Surgery, RWTH Aachen University, Germany.

出版信息

Acta Biomater. 2008 Jul;4(4):997-1004. doi: 10.1016/j.actbio.2008.01.020. Epub 2008 Feb 23.

Abstract

The porous TiO(2)/glass composite Ecopore has potential applications in hard tissue replacement. We describe the modification of Ecopore with the growth factor bone morphogenetic protein-2 (BMP-2) to add osteoinductive properties. Ecopore covalently coated with BMP-2 caused a weak induction of alkaline phosphatase in murine embryonal fibroblasts. In a rabbit bone defect model, BMP-2-coated Ecopore had moderately higher bone apposition rates and ingrown bone quantities at 6 weeks after implantation. To overcome loss of function due to chemical surface coupling, we filled the pore system of Ecopore with heparinized collagen sponge and loaded this secondary matrix with BMP-2. Heparinization of collagen filling increased the BMP-2 loading capacity of the matrix approximately 1.28-fold. Within 96 h, 17.0+/-0.1 and 10.1+/-0.2% of the used BMP-2 was released from non-modified and heparinized Ecopore/collagen, respectively, indicating that the heparin modification retarded BMP-2 release. Revealed by energy-dispersive X-ray spectroscopy analysis of implant cross-sectional areas, BMP-2-loaded Ecopore/collagen had significantly higher bony ingrowth quantities in rabbits, with the heparinized modification yielding the highest value (16.09+/-3.51%, p<0.005) compared with the non-heparinized matrix (10.72+/-4.07%, p<0.05) and the BMP-2-free controls (5.60+/-1.47%). This suggested a beneficial effect of the biomimetic modification of Ecopore with heparinized collagen for bone healing and integration.

摘要

多孔TiO(2)/玻璃复合材料Ecopore在硬组织替代方面具有潜在应用价值。我们描述了用生长因子骨形态发生蛋白-2(BMP-2)对Ecopore进行改性以赋予其骨诱导特性。共价包被BMP-2的Ecopore在小鼠胚胎成纤维细胞中引起了较弱的碱性磷酸酶诱导作用。在兔骨缺损模型中,包被BMP-2的Ecopore在植入后6周时具有适度更高的骨附着率和内生骨量。为克服由于化学表面偶联导致的功能丧失,我们用肝素化胶原海绵填充Ecopore的孔隙系统,并在这种二级基质中负载BMP-2。胶原填充物的肝素化使基质的BMP-2负载能力提高了约1.28倍。在96小时内,分别有17.0±0.1%和10.1±0.2%的所用BMP-2从未改性和肝素化的Ecopore/胶原中释放出来,这表明肝素改性延缓了BMP-2的释放。通过对植入物横截面积的能量色散X射线光谱分析显示,负载BMP-2的Ecopore/胶原在兔体内具有显著更高的骨内生量,与未肝素化基质(10.72±4.07%,p<0.05)和无BMP-2对照组(5.60±1.47%)相比,肝素化改性产生的值最高(16.09±3.51%,p<0.005)。这表明用肝素化胶原对Ecopore进行仿生改性对骨愈合和整合具有有益作用。

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