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Switchable and Obedient Interfacial Properties That Grant New Biomedical Applications

机译:授予新的生物医学应用程序的可切换和表达界面属性

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摘要

Toward imitating the natural smartness and responsivity of biological systems, surface interfacial properties are considered to be responsive and tunable if they show a reactive behavior to an environmental stimulus. This is still quite different from many contemporary biomaterials that lack responsiveness to interact with blood and different body tissues in a physiological manner. Meanwhile it is possible to even go one step further from responsiveness to dual-mode switchability and explore "switchable" or "reversible" responses of synthetic materials. We understand "switchable biomaterials" as materials undergoing a stepwise, structural transformation coupled with considerable changes of interfacial and other surface properties as a response to a stimulus. Therewith, a survey on stimuli-induced dynamic changes of charge, wettability, stiffness, topography, porosity, and thickness/swelling is presented here, as potentially powerful new technologies especially for future biomaterial development. Since living cells constantly sense their environment through a variety of surface receptors and other mechanisms, these obedient interfacial properties were particularly discussed regarding their advantageous multifunctionality for protein adsorption and cell adhesion signaling, which may alter in time and with environmental conditions.
机译:为了模仿生物系统的自然智能和响应度,如果它们对环境刺激的反应行为表现出反应性,则认为表面界面性能被认为是响应性和可调性。这与许多当代生物材料仍然是完全不同的,这些生物材料缺乏以生理方式与血液和不同身体组织相互作用的反应。同时,甚至可以进一步从对双模可切换性的响应性进一步走一步,并探索“可切换”或“可逆”响应的合成材料。我们理解“可切换的生物材料”作为逐步进行的材料,结构变换与对刺激刺激的响应相当于界面和其他表面性质的相当大变化。因此,这里介绍了关于刺激诱导的电荷,润湿性,刚度,地形,孔隙度和厚度/肿胀的调查,作为可能强大的新技术,特别是对于未来的生物材料开发。由于活细胞通过各种表面受体和其他机制不断感知它们的环境,因此特别讨论了这些具有蛋白质吸附和细胞粘合信号传导的有利多官能度的这些具有界面性质,这可能会及时改变和环境条件。

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