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High-Yield Activation of Scaffold Polymer Surfaces To Attach Cell Adhesion Molecules

机译:支架聚合物表面的高活性活化以附着细胞粘附分子

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Zirconium tetra(tert-butoxide) reacts with surface amide groups of polyamide nylon 6/6 to give (η~2-amidate)zirconium complexes in high yield. These surface complexes react to bond the cell-adhesive peptide arginine-glycine-aspartic acid (RGD) to the polymer surface. A surface loading of 0.18 nmol/cm~2 of RGD is achieved, which is 20-1000 times higher than previously reported attainable on natural or synthetic polymers by other strategies. Approximately 40% of the nylon surface is covered by the RGD, which gives a surface that is both stable to hydrolysis and highly active for cell adhesion and spreading in vitro.
机译:四(叔丁醇)锆与聚酰胺尼龙6/6的表面酰胺基反应生成高产率的(η〜2-氨基甲酸酯)锆络合物。这些表面复合物反应以将细胞粘附肽精氨酸-甘氨酸-天冬氨酸(RGD)结合到聚合物表面。实现了RGD的0.18 nmol / cm〜2的表面负载,这是以前通过其他策略在天然或合成聚合物上可获得的报道的20-1000倍。 RGD覆盖尼龙表面的大约40%,该表面既对水解稳定又对细胞粘附和体外扩散具有高活性。

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