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Design Strategies of Conductive Hydrogel for Biomedical Applications

机译:生物医学应用导电水凝胶的设计策略

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摘要

Conductive hydrogel, with electroconductive properties and high water content in a three-dimensional structure is prepared by incorporating conductive polymers, conductive nanoparticles, or other conductive elements, into hydrogel systems through various strategies. Conductive hydrogel has recently attracted extensive attention in the biomedical field. Using different conductivity strategies, conductive hydrogel can have adjustable physical and biochemical properties that suit different biomedical needs. The conductive hydrogel can serve as a scaffold with high swelling and stimulus responsiveness to support cell growth in vitro and to facilitate wound healing, drug delivery and tissue regeneration in vivo. Conductive hydrogel can also be used to detect biomolecules in the form of biosensors. In this review, we summarize the current design strategies of conductive hydrogel developed for applications in the biomedical field as well as the perspective approach for integration with biofabrication technologies.
机译:通过通过各种策略将导电聚合物,导电纳米颗粒或其他导电元件结合到水凝胶系统中,制备具有导电性的导电性质和高含水含量。导电水凝胶最近在生物医学领域引起了广泛的关注。使用不同的电导率策略,导电水凝胶可具有可调节的物理和生化特性,以满足不同的生物医学需求。导电水凝胶可以用作具有高溶胀和刺激反应性的支架,以支持体外细胞生长,并促进体内伤口愈合,药物递送和组织再生。导电水凝胶还可用于检测生物传感器形式的生物分子。在本综述中,我们总结了为生物医学领域的应用开发的导电水凝胶的当前设计策略以及与生物制造技术集成的透视方法。

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