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Integrated zwitterionic conjugated polymers for bioelectronics, biosensing, regenerative medicine, and energy applications

机译:集成的两性离子共轭聚合物,用于生物电子,生物传感,再生医学和能源应用

摘要

The present invention is directed to a versatile and high performance zwitterionic CP platform, which integrates all desired functions into one material. This zwitterionic CP consists of the conducting backbone and multifunctional zwitterionic side chains. Non-conducting zwitterionic materials gain electronic conductivity through the conducting backbone and CPs obtain excellent biocompatibility, sensitivity to environmental stimuli and controllable antifouling properties via multifunctional zwitterionic side chains. Unique properties from two distinct materials (conducting materials and zwitterionic materials) are integrated into one material without sacrificing any properties. This platform can potentially be adapted for a range of applications (e.g. bioelectronics, tissue engineering, wound healing, robotic prostheses, biofuel cell, etc.), which all require high performance conducting materials with excellent antifouling/biocompatibility at complex biointerfaces. This conducting material platform will significantly advance the development of conducting polymers in the field of biomedicine and biotechnology.
机译:本发明针对一种通用且高性能的两性离子CP平台,其将所有期望的功能整合到一种材料中。该两性离子CP由导电主链和多功能两性离子侧链组成。非导电两性离子材料通过导电骨架获得电子导电性,CP通过多功能两性离子侧链获得出色的生物相容性,对环境刺激的敏感性以及可控的防污性能。将两种不同材料(导电材料和两性离子材料)的独特特性整合到一种材料中,而不会牺牲任何特性。该平台可能适用于多种应用(例如生物电子学,组织工程,伤口愈合,机器人假体,生物燃料电池等),这些应用都需要高性能的导电材料,并在复杂的生物界面具有出色的防污/生物相容性。该导电材料平台将大大推动生物医学和生物技术领域中导电聚合物的发展。

著录项

  • 公开/公告号US10407537B2

    专利类型

  • 公开/公告日2019-09-10

    原文格式PDF

  • 申请/专利权人 THE UNIVERSITY OF AKRON;

    申请/专利号US201715600080

  • 发明设计人 GANG CHENG;

    申请日2017-05-19

  • 分类号C09D5/14;C09D5/16;C09D5/24;A01N43/10;A01N43/90;A61K47/34;A61L27/18;A61L31/06;C08G61/12;C09D165;C08G75;

  • 国家 US

  • 入库时间 2022-08-21 12:12:35

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