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Surface Charge and Overlayer pH Influence the Dynamics of Supported Phospholipid Films

机译:表面电荷和上层pH对负载的磷脂薄膜动力学的影响

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摘要

Understanding the thermodynamics and kinetics of interactions between model lipid bilayers and planar supports is of critical importance in the furtherance of biosensing and the creation of biomimetic devices. Evaluating these properties can be accomplished through understanding the diffusional properties of the bilayer constituents. In this report, the dynamics of a model DMPC bilayer supported on a phosphorylated silica surface are studied in the presence and absence of interfacial Ca2+ as a function of pH of the aqueous overlayer. The data for this system reveal the importance of the balance of ionic interactions between the interfacial species, and the dependence of the diffusional, kinetic and thermodynamic properties of the system on pH. The thermodynamic data suggest that interactions between the bilayer and surface are mediated enthalpically rather than entropically.
机译:理解模型脂质双层与平面支持物之间相互作用的热力学和动力学对促进生物传感和仿生装置的发展至关重要。评估这些性质可以通过了解双层成分的扩散性质来完成。在此报告中,研究了在存在和不存在界面Ca 2 + 时,作为水覆盖层pH值函数的模型DMPC双层支撑在磷酸化二氧化硅表面上的动力学。该系统的数据揭示了界面物种之间离子相互作用平衡的重​​要性,以及该系统的扩散,动力学和热力学性质对pH的依赖性。热力学数据表明,双层与表面之间的相互作用是通过焓而不是通过熵介导的。

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