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Switching the Biointerface of Displaceable Poly-p-xylylene Coatings

机译:切换可置换聚对二甲苯涂料的生物界面

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A new class of functionalized poly-p-xylyene coating has been synthesized to provide switchable and displaceable surface properties for biomaterials. The switchability is achieved through a mechanism for detaching/attaching biomolecules and/or a mechanism through which the programmed restoration of functions or their replacement by other functions can be carried out. This advanced version of poly-p-xylylene comprises an integrated disulfide moiety within the functional side group, and the switching phenomenon between the immobilized functional molecules is triggered by the redox thiol disulfide interchange reaction. These dynamically well-defined molecules on the surfaces respond simultaneously to altered biological properties and controlled biointerfacial functions, for example, switching wettability or reversibly altered cell adhesion activity. Poly-p-xylylenes are a key player in controlling surface properties for many important applications, such as medical implants, biosensors, bioMEMS devices, and microfluidics. The introduction of this new facet of poly-p-xylylenes enables the dynamic mimicry of biological functions relevant to the design of new biomaterials.
机译:合成了新型的功能化聚对二甲苯涂层,可为生物材料提供可切换和可置换的表面性能。通过用于分离/附着生物分子的机构和/或通过其可以执行功能的程序恢复或将其替换为其他功能的机构来实现可切换性。这种先进的聚对亚二甲苯基在功能性侧基中包含一个整合的二硫键部分,并且固定的功能分子之间的转换现象是由氧化还原硫醇二硫键互换反应触发的。这些在表面上动态定义明确的分子可同时响应改变的生物学特性和受控的生物界面功能,例如,切换润湿性或可逆地改变细胞粘附活性。聚对二甲苯是控制许多重要应用(例如医疗植入物,生物传感器,bioMEMS器件和微流体)的表面性能的关键角色。引入这种新的聚对二甲苯构面可以动态模仿与新生物材料设计相关的生物学功能。

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