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异质门控凝胶离子电子学:生物界面与离子信号传输的一场革命。

Heterogating Gel Iontronics: A Revolution in Biointerfaces and Ion Signal Transmission.

作者信息

Wu Zhixin, Zhao Ziguang

机构信息

School of Future Technology, University of Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Gels. 2024 Sep 15;10(9):594. doi: 10.3390/gels10090594.

Abstract

Currently, existing iontronic systems are limited and struggle to process electronic-to-multi-ionic transport, resulting in interchange inefficiencies and incompatibilities between artificial ion devices and biological tissue interfaces. The development of heterogating gel iontronics offers a significant advancement in bridging this gap, drawing inspiration from the complex ionic transmission mechanisms found in biological synapses within neural networks. These heterogating gels utilize a biphasic architecture, where the heterointerface effect constructs ionic transfer energy barriers, enabling distinct signal transmission among different ions. In systems with multiple ion species, heterogating gel iontronics allow for precise control of ion transmission, realizing hierarchical and selective cross-stage signal transmission as a neuromorphic function. This perspective highlights the vast potential of heterogating iontronics in applications such as biosensing, neuroprosthetics, and ion separation technologies. Meanwhile, it also addresses the current challenges, including scaling production, ensuring biocompatibility, and integrating with existing technologies, which are crucial for future development. The advancement of heterogating gels is expected to promote the integration between abiotic and biotic systems, with broad implications for smart sensors, bioneural devices, and beyond.

摘要

目前,现有的离子电子系统存在局限性,难以处理电子到多离子的传输,导致人工离子设备与生物组织界面之间的交换效率低下和不兼容性。异质门控凝胶离子电子学的发展在弥合这一差距方面取得了重大进展,其灵感来源于神经网络中生物突触复杂的离子传输机制。这些异质门控凝胶采用双相结构,其中异质界面效应构建了离子转移能垒,使得不同离子之间能够进行独特的信号传输。在具有多种离子种类的系统中,异质门控凝胶离子电子学能够精确控制离子传输,实现作为神经形态功能的分层和选择性跨阶段信号传输。这一观点突出了异质门控离子电子学在生物传感、神经假体和离子分离技术等应用中的巨大潜力。同时,它也解决了当前面临的挑战,包括扩大生产规模、确保生物相容性以及与现有技术集成,这些对于未来的发展至关重要。异质门控凝胶的进步有望促进非生物系统与生物系统之间的整合,对智能传感器、生物神经设备及其他领域具有广泛的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83ca/11431666/4c20ed8dafe2/gels-10-00594-g001.jpg

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