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Surface Nanoarchitecture for Bio-Applications: Self-Regulating Intelligent Interfaces

机译:用于生物应用的表面纳米体系结构:自调节智能接口

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摘要

The surface nanoarchitecture provides spatially and temporally resolved stimuli response of the material, and offers defined control over the behavior of biomolecules and cells at the solid-liquid interface. Here, the focus is on metal-based systems that are interesting for biomedical applications. Intelligence of the surface is suggested to be achieved through its nanostructuring for stimuli responsive properties. Spatial and temporal cell performance at the surface, provided by the surface nanoarchitecture, offers advanced bio-applications of metal-based materials, such as implantation, lab-on-chip and organ-on-chip, biosensors, smart biomaterials and drug delivery systems. Spatial control is achieved by surface patterning. Temporal control is accessed through the application of stimuli responsive switchable surface chemistry, sensitive to external parameters: temperature, pH, light, electric and magnetic field, ionic strength, surrounding medium (hydrogels in water), multi-trigger response, and response to products of the cell metabolism. The key issue is the prospect in the formation of self-regulating "intelligent" surface cell interactions: biomimetic of natural systems.
机译:表面纳米结构提供了材料在空间和时间上分辨的刺激响应,并提供了对固液界面上生物分子和细胞行为的明确控制。在这里,重点是对生物医学应用感兴趣的基于金属的系统。建议通过其纳米结构获得表面的智能,以产生刺激响应特性。表面纳米结构在表面提供的时空细胞性能为金属基材料提供了先进的生物应用,例如植入,芯片实验室和芯片上器官,生物传感器,智能生物材料和药物输送系统。通过表面图案化来实现空间控制。通过应用对刺激敏感的可切换表面化学物质来进行时间控制,该化学物质对外部参数敏感:温度,pH,光,电场和磁场,离子强度,周围介质(水中的水凝胶),多次触发响应以及对产品的响应细胞的新陈代谢。关键问题是形成自我调节的“智能”表面细胞相互作用的前景:自然系统的仿生。

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  • 来源
    《Advanced Functional Materials》 |2013年第36期|4483-4506|共24页
  • 作者单位

    Max Planck Institute of Colloids and Interfaces Wissenschaftspark Colm Am Muhlenberg 1, Colm 14424, Germany Chemistry Department Belarusian State University Leningradskaya str. 14, Minsk, 220030, Belarus;

    Chair of Physical Chemistry II University of Bayreuth Universitatsstr. 30, Bayreuth 95440, Germany;

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