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用于现代生物医学应用的工程抗污导电聚合物。

Engineering Antifouling Conducting Polymers for Modern Biomedical Applications.

机构信息

Department of Materials Science and Engineering , National Taiwan University , No. 1, Sec. 4, Roosevelt Road , Taipei 10617 , Taiwan.

Advanced Research Center for Green Materials Science and Technology , National Taiwan University , Taipei 10617 , Taiwan.

出版信息

ACS Appl Mater Interfaces. 2019 Jun 19;11(24):21294-21307. doi: 10.1021/acsami.9b04924. Epub 2019 Jun 4.

Abstract

Conducting polymers are considered to be favorable electrode materials for implanted biosensors and bioelectronics, because their mechanical properties are similar to those of biological tissues such as nerve and brain tissues. However, one of the primary challenges for implanted devices is to prevent the unwanted protein adhesion or cell binding within biological fluids. The nonspecific adsorption generally causes the malfunction of implanted devices, which is problematic for long-term applications. When responding to the requirements of solving the problems caused by nonspecific adsorption, an increasing number of studies on antifouling conducting polymers has been recently published. In this review, synthetic strategies for preparing antifouling conducting polymers, including direct synthesis of functional monomers and post-functionalization, are introduced. The applications of antifouling conducting polymers in modern biomedical applications are particularly highlighted. This paper presents focuses on the features of antifouling conducting polymers and the challenges of modern biomedical applications.

摘要

导电聚合物被认为是用于植入式生物传感器和生物电子学的理想电极材料,因为它们的机械性能类似于神经和脑组织等生物组织。然而,植入式设备面临的主要挑战之一是防止生物液体内不受欢迎的蛋白质黏附或细胞结合。非特异性吸附通常会导致植入式设备出现故障,这对于长期应用来说是一个问题。为了解决非特异性吸附引起的问题,最近越来越多的研究关注于抗污导电聚合物。在这篇综述中,介绍了制备抗污导电聚合物的合成策略,包括功能单体的直接合成和后功能化。特别强调了抗污导电聚合物在现代生物医学应用中的应用。本文主要关注抗污导电聚合物的特性和现代生物医学应用面临的挑战。

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