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Responsive cell-material interfaces

机译:响应式单元材料接口

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摘要

Major design aspects for novel biomaterials are driven by the desire to mimic more varied and complex properties of a natural cellular environment with man-made materials. The development of stimulus responsive materials makes considerable contributions to the effort to incorporate dynamic and reversible elements into a biomaterial. This is particularly challenging for cell-material interactions that occur at an interface (biointerfaces); however, the design of responsive biointerfaces also presents opportunities in a variety of applications in biomedical research and regenerative medicine. This review will identify the requirements imposed on a responsive biointerface and use recent examples to demonstrate how some of these requirements have been met. Finally, the next steps in the development of more complex biomaterial interfaces, including multiple stimuli-responsive surfaces, surfaces of 3D objects and interactive biointerfaces will be discussed.
机译:新型生物材料的主要设计方面是由用人造材料模拟自然细胞环境的更多变化和复杂特性的愿望驱动的。刺激响应材料的发展为将动态和可逆元素整合到生物材料中的努力做出了巨大贡献。对于在一个界面(生物界面)上发生的细胞-材料相互作用,这尤其具有挑战性。然而,响应性生物界面的设计也为生物医学研究和再生医学的各种应用提供了机会。这项审查将确定对响应性生物界面施加的要求,并使用最近的示例来说明如何满足其中的一些要求。最后,将讨论开发更复杂的生物材料界面(包括多个刺激响应表面,3D对象的表面和交互式生物界面)的下一步。

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