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Conducting polymer nanomaterials for biomedical applications: Cellular interfacing and biosensing

机译:用于生物医学应用的导电聚合物纳米材料:细胞接口和生物传感

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摘要

Recently, conducting polymer (CP) nanomaterials have shown outstanding chemical and physical properties compared with ceramic and metal nanomaterials. Thus, significant efforts have been made to fabricate CPs that enable various biomedical applications, such as high-performance biosensing and cellular interfacing. Although sensing or measuring devices based on CP nanomaterials have shown excellent electrical and physical properties, their limitations, such as the minimum detectable level (MDL), cytotoxicity assessments, and reliable synthesis methods, remain challenges to realizing high-performance biomedical geometries. In this article, we provide the general information on CP nanomaterials and their biomedical applications focusing especially on cellular interfacing and biosensing. Moreover, we discuss perspectives for state-of-the-art biomedical geometries using various CP nanomaterials.
机译:近来,与陶瓷和金属纳米材料相比,导电聚合物(CP)纳米材料已显示出出色的化学和物理性能。因此,已经做出了巨大的努力来制造能够实现各种生物医学应用(例如高性能生物传感和细胞接口)的CP。尽管基于CP纳米材料的传感或测量设备已显示出出色的电气和物理性能,但其局限性(例如最低可检测水平(MDL),细胞毒性评估和可靠的合成方法)仍然对实现高性能生物医学几何结构构成挑战。在本文中,我们提供有关CP纳米材料及其生物医学应用的一般信息,尤其是细胞界面和生物传感方面的信息。此外,我们讨论了使用各种CP纳米材料的最新生物医学几何学的观点。

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