Bioelectric Interface Technologies in Cells and Organoids

Abstract The past two decades have witnessed breakthroughs in cellular‐scale bioelectronics and their widespread applications in life sciences, creating many powerful platforms for studying organisms directly and efficiently. These advanced devices can integrate seamlessly and intimately onto/into t...

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Main Authors: Zhaoguo Xue, Jianzhong Zhao
Format: Article
Language:English
Published: Wiley-VCH 2023-12-01
Series:Advanced Materials Interfaces
Subjects:
Online Access:https://doi.org/10.1002/admi.202300550
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author Zhaoguo Xue
Jianzhong Zhao
author_facet Zhaoguo Xue
Jianzhong Zhao
author_sort Zhaoguo Xue
collection DOAJ
description Abstract The past two decades have witnessed breakthroughs in cellular‐scale bioelectronics and their widespread applications in life sciences, creating many powerful platforms for studying organisms directly and efficiently. These advanced devices can integrate seamlessly and intimately onto/into target cells and organoids, providing unprecedented functions and revolutionary capabilities. Bioelectronics with nanostructured designs are developed to allow for long‐term, stable monitoring of electrophysiological activities. This review summarizes nanostructured bioelectronics for cell electrophysiology recording, emphasizing the crucial roles of structural designs on functions and capabilities, e.g., intracellular access, high‐density multiplexed recording, multifunctional interfaces and the conformability to curvy biological shapes. Finally, the remaining challenges and opportunities in nanostructured bioelectronics are identified, and perspectives on the future developments toward their practical applications are provided.
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spelling doaj.art-ae81a9e404ca46ba8839cf5e9128e6492023-12-23T04:43:29ZengWiley-VCHAdvanced Materials Interfaces2196-73502023-12-011036n/an/a10.1002/admi.202300550Bioelectric Interface Technologies in Cells and OrganoidsZhaoguo Xue0Jianzhong Zhao1National Key Laboratory of Strength and Structural Integrity Institute of Solid Mechanics School of Aeronautic Science and Engineering Beihang University Beijing 100191 P. R. ChinaApplied Mechanics Laboratory Laboratory of Flexible Electronics Technology Department of Engineering Mechanics Tsinghua University Beijing 100084 P. R. ChinaAbstract The past two decades have witnessed breakthroughs in cellular‐scale bioelectronics and their widespread applications in life sciences, creating many powerful platforms for studying organisms directly and efficiently. These advanced devices can integrate seamlessly and intimately onto/into target cells and organoids, providing unprecedented functions and revolutionary capabilities. Bioelectronics with nanostructured designs are developed to allow for long‐term, stable monitoring of electrophysiological activities. This review summarizes nanostructured bioelectronics for cell electrophysiology recording, emphasizing the crucial roles of structural designs on functions and capabilities, e.g., intracellular access, high‐density multiplexed recording, multifunctional interfaces and the conformability to curvy biological shapes. Finally, the remaining challenges and opportunities in nanostructured bioelectronics are identified, and perspectives on the future developments toward their practical applications are provided.https://doi.org/10.1002/admi.202300550bioelectronicselectrophysiology recordingnanoprobesnanostructuresstructural designs
spellingShingle Zhaoguo Xue
Jianzhong Zhao
Bioelectric Interface Technologies in Cells and Organoids
Advanced Materials Interfaces
bioelectronics
electrophysiology recording
nanoprobes
nanostructures
structural designs
title Bioelectric Interface Technologies in Cells and Organoids
title_full Bioelectric Interface Technologies in Cells and Organoids
title_fullStr Bioelectric Interface Technologies in Cells and Organoids
title_full_unstemmed Bioelectric Interface Technologies in Cells and Organoids
title_short Bioelectric Interface Technologies in Cells and Organoids
title_sort bioelectric interface technologies in cells and organoids
topic bioelectronics
electrophysiology recording
nanoprobes
nanostructures
structural designs
url https://doi.org/10.1002/admi.202300550
work_keys_str_mv AT zhaoguoxue bioelectricinterfacetechnologiesincellsandorganoids
AT jianzhongzhao bioelectricinterfacetechnologiesincellsandorganoids