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Biomaterials-Based Electronics: Polymers and Interfaces for Biology and Medicine

机译:基于生物材料的电子产品:生物和医学的聚合物和界面

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摘要

Advanced polymeric biomaterials continue to serve as a cornerstone of new medical technologies and therapies. The vast majority of these materials, both natural and synthetic, interact with biological matter without direct electronic communication. However, biological systems have evolved to synthesize and employ naturally-derived materials for the generation and modulation of electrical potentials, voltage gradients, and ion flows. Bioelectric phenomena can be interpreted as potent signaling cues for intra- and inter-cellular communication. These cues can serve as a gateway to link synthetic devices with biological systems. This progress report will provide an update on advances in the application of electronically active biomaterials for use in organic electronics and bio-interfaces. Specific focus will be granted to the use of natural and synthetic biological materials as integral components in technologies such as thin film electronics, in vitro cell culture models, and implantable medical devices. Future perspectives and emerging challenges will also be highlighted.
机译:先进的聚合物生物材料继续作为新医疗技术和疗法的基石。绝大多数这些材料,天然和合成,与生物物质相互作用而无需直接电子通信。然而,生物系统已经进化为合成并采用自然衍生的材料,用于产生和调制电势,电压梯度和离子流。生物电现象可以被解释为有效的信号线,用于内部和间蜂窝间通信。这些提示可以用作与生物系统连接合成器件的门户。此进度报告将提供有关应用用于有机电子和生物界面的电子活性生物材料的应用进展的更新。将授予使用自然和合成生物材料作为薄膜电子产品,体外细胞培养模型和可植入医疗器械等技术的组成部分。未来的观点和新兴挑战也将突出显示。

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