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首页> 外文期刊>Biomaterials >Effect of biomaterial surface properties on fibronectin-alpha(5)beta(1) integrin interaction and cellular attachment
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Effect of biomaterial surface properties on fibronectin-alpha(5)beta(1) integrin interaction and cellular attachment

机译:生物材料表面特性对纤连蛋白-α(5)β(1)整合素相互作用和细胞附着的影响。

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摘要

The ability of fibronectin (Fn) to mediate cell adhesion through binding to alpha(5)beta(1) integrins is dependent on the conditions of its adsorption to the surface. Using a model system of alkylsilane SAMs with different functional groups (X=OH, COOH, NH, and CH3) and an erythroleukemia cell line expressing a single integrin (alpha(5)beta(1)), the effect of surface properties on the cellular adhesion with adsorbed Fn layers was investigated. I-125-labeled Fn, a modified biochemical cross-linking/extraction technique and a spinning disc apparatus were combined to quantify the Fn adsorption, integrin binding and adhesion strength, respectively. This methodology allows for a binding equilibrium analysis that more closely reflects cellular adhesion found in stable tissue constructs in vivo. Differences in detachment strength and integrin binding were explained in terms of changes in the adhesion constant (psi, related to affinity) and binding efficiency of the adsorbed Fn for the alpha(5)beta(1) integrins (CH(3)approximate to NH2
机译:纤连蛋白(Fn)通过与alpha(5)beta(1)整合素结合来介导细胞粘附的能力取决于其吸附到表面的条件。使用具有不同官能团(X = OH,COOH,NH和CH3)的烷基硅烷SAMs模型系统和表达单个整联蛋白(alpha(5)beta(1))的红白血病细胞系,表面特性对研究了吸附有Fn层的细胞粘附性。结合I-125标记的Fn,改良的生化交联/萃取技术和旋转盘仪器,分别定量Fn的吸附,整联蛋白结合和粘附强度。这种方法可以进行结合平衡分析,从而更紧密地反映体内稳定组织构建物中的细胞粘附。分离强度和整联蛋白结合的差异是根据粘附常数(psi,与亲和力有关)和吸附的Fn对α(5)β(1)整联蛋白(CH(3)近似于NH2)的结合效率的变化来解释的

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