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Green tea polyphenol tailors cell adhesivity of RGD displaying surfaces: multicomponent models monitored optically

机译:绿茶多酚可调节RGD显示表面的细胞粘附性:光学监控多组分模型

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摘要

The interaction of the anti-adhesive coating, poly(L-lysine)-graft-poly(ethylene glycol) (PLL-g-PEG) and its Arg-Gly-Asp (RGD) functionalized form, PLL-g-PEG-RGD, with the green tea polyphenol, epigallocatechin-gallate (EGCg) was in situ monitored. After, the kinetics of cellular adhesion on the EGCg exposed coatings were recorded in real-time. The employed plate-based waveguide biosensor is applicable to monitor small molecule binding and sensitive to sub-nanometer scale changes in cell membrane position and cell mass distribution; while detecting the signals of thousands of adhering cells. The combination of this remarkable sensitivity and throughput opens up new avenues in testing complicated models of cell-surface interactions. The systematic studies revealed that, despite the reported excellent antifouling properties of the coatings, EGCg strongly interacted with them, and affected their cell adhesivity in a concentration dependent manner. Moreover, the differences between the effects of the fresh and oxidized EGCg solutions were first demonstrated. Using a semiempirical quantumchemical method we showed that EGCg binds to the PEG chains of PLL-g-PEG-RGD and effectively blocks the RGD sites by hydrogen bonds. The calculations supported the experimental finding that the binding is stronger for the oxidative products. Our work lead to a new model of polyphenol action on cell adhesion ligand accessibility and matrix rigidity.
机译:抗粘涂层,聚(L-赖氨酸)-接枝-聚(乙二醇)(PLL-g-PEG)及其Arg-Gly-Asp(RGD)功能化形式PLL-g-PEG-RGD的相互作用,用绿茶多酚对表没食子儿茶素-没食子酸酯(EGCg)进行原位监测。之后,实时记录暴露在EGCg涂层上的细胞粘附动力学。所采用的基于板的波导生物传感器适用于监测小分子结合并对细胞膜位置和细胞质量分布的亚纳米尺度变化敏感。同时检测成千上万个粘附细胞的信号。这种出色的灵敏度和通量的结合为测试复杂的细胞表面相互作用模型提供了新途径。系统研究表明,尽管据报道该涂层具有出色的防污性能,但EGCg仍与它们强烈相互作用,并以浓度依赖性方式影响其细胞粘附性。此外,首先证明了新鲜的和氧化的EGCg溶液的效果之间的差异。使用半经验量子化学方法,我们表明EGCg与PLL-g-PEG-RGD的PEG链结合,并通过氢键有效地阻断了RGD位点。该计算支持了实验发现,即对于氧化产物的结合更强。我们的工作导致了多酚作用于细胞粘附配体可及性和基质刚性的新模型。

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