首页> 外文会议>Nanoelectronics Conference (INEC), 2010 >The nanofabrication of CD34 antibody-VEGF-heparin on titanium surface via layer-by-layer assembly for biofunctionalization
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The nanofabrication of CD34 antibody-VEGF-heparin on titanium surface via layer-by-layer assembly for biofunctionalization

机译:CD34抗体-VEGF-肝素通过逐层组装在钛表面的纳米加工,以实现生物功能化

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To provide a new strategy for biocompatibility of implanted stents, the surface endothelialization of the metal material is paid more attention. In this work, we focus on the nano-building of a biofunctional layer on the titanium surface with CD34 antibody, heparin, and vascular endothelial growth factor (VEGF) for achieving better compatibility surface. Firstly, Titanium was treated by NaOH solution for obtaining negative charge and forming nanostructure which had been proved to be benefit for the biomacromolecules attachment subsequently. Then, the biofunctional layer was nanofabricated by a layer-by-layer self-assembly (LBL) technique with the above biomacromolecules. The chemical composition, surface roughness topography and contact angle of assembled layer were investigated by Fourier transform infrared spectroscopy (FTIR), atomic force microscope (AFM), scanning electron microscope (SEM), immunofluorescence and water contact angle measurement, respectively. The biocompatibility of biofunctional layer was evaluated by in vitro endothelial progenitor cells culture, in vitro platelet adhesion experiment and the activated partial thromboplastin time (APTT) measurement, etc. The results disclosed that, comparing to the controlled titanium surface, the endothelialization trend and the anti-thrombosis ability of biofunctional titanium surface were obviously improved. The built layer could capture the EPCs from circulated solutions and induced the EPCs differentiation into endothelial cells (ECs). It was supported that the combination of CD34 antibody and VEGF could significantly promote re-endothelialization of Titanium surface.
机译:为了为植入式支架的生物相容性提供新的策略,金属材料的表面内皮化受到更多关注。在这项工作中,我们致力于利用CD34抗体,肝素和血管内皮生长因子(VEGF)在钛表面纳米结构上构建生物功能层,以实现更好的相容性表面。首先,用NaOH溶液处理钛以获得负电荷并形成纳米结构,这已被证明对随后的生物大分子的附着是有益的。然后,通过具有上述生物大分子的逐层自组装(LBL)技术来纳米制造生物功能层。分别通过傅里叶变换红外光谱(FTIR),原子力显微镜(AFM),扫描电子显微镜(SEM),免疫荧光和水接触角测量研究了组装层的化学成分,表面粗糙度形貌和接触角。通过体外内皮祖细胞培养,体外血小板粘附实验和活化部分凝血活酶时间(APTT)的测定等方法评价了生物功能层的生物相容性。结果表明,与受控钛表面相比,内皮化趋势和血管内皮生长趋势与对照相比有所提高。生物功能钛表面的抗血栓形成能力明显提高。构建的层可以从循环溶液中捕获EPC,并诱导EPC分化为内皮细胞(EC)。支持CD34抗体和VEGF的组合可以显着促进钛表面的再内皮化。

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