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Bioinspired interface for nanobiodevices based on phospholipid polymer chemistry

机译:基于磷脂聚合物化学的纳米生物设备的生物启发界面

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摘要

This review paper describes novel biointerfaces for nanobiodevices. Biocompatible and non-biofouling surfaces are designed largely based on cell membrane structure, and the preparation and functioning of the bioinspired interface are evaluated and compared between living and artificial systems. A molecular assembly of polymers with a phospholipid polar group has been developed as the platform of the interface. At the surface, protein adsorption is effectively reduced and the subsequent bioreactions are suppressed. Through this platform, biomolecules with a high affinity to the specific molecules are introduced under mild conditions. The activity of the biomolecules is retained even after immobilization. This bioinspired interface is adapted to construct bionanodevices, that is, microfluidic chips and nanoparticles for capturing target molecules and cells. The interface functions well and has a very high efficiency for biorecognition. This bioinspired interface is a promising universal platform that integrates various fields of science and has useful applications.
机译:这篇综述文章描述了纳米生物装置的新型生物界面。生物相容性表面和非生物污染表面的设计主要基于细胞膜结构,并且对生物启发性界面的制备和功能进行了评估,并在生活系统和人工系统之间进行了比较。具有磷脂极性基团的聚合物的分子组装已经开发为界面的平台。在表面上,有效地减少了蛋白质吸附,并抑制了随后的生物反应。通过该平台,可以在温和条件下引入对特定分子具有高亲和力的生物分子。即使固定后,生物分子的活性也得以保留。这种受生物启发的界面适用于构建仿生生物器件,即用于捕获目标分子和细胞的微流控芯片和纳米颗粒。该界面功能良好,并且具有很高的生物识别效率。这种受生物启发的界面是一个很有前途的通用平台,它集成了科学的各个领域并具有有用的应用程序。

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