Cargando…

Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays

Recent years have witnessed a spurt of progress in the application of the encoding and decoding of neural activities to drug screening, diseases diagnosis, and brain–computer interactions. To overcome the constraints of the complexity of the brain and the ethical considerations of in vivo research,...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Shihong, Liu, Yaoyao, Yang, Yan, Zhang, Kui, Liang, Wei, Xu, Zhaojie, Wu, Yirong, Luo, Jinping, Zhuang, Chengyu, Cai, Xinxia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145465/
https://www.ncbi.nlm.nih.gov/pubmed/37420942
http://dx.doi.org/10.3390/mi14040709
_version_ 1785034340058529792
author Xu, Shihong
Liu, Yaoyao
Yang, Yan
Zhang, Kui
Liang, Wei
Xu, Zhaojie
Wu, Yirong
Luo, Jinping
Zhuang, Chengyu
Cai, Xinxia
author_facet Xu, Shihong
Liu, Yaoyao
Yang, Yan
Zhang, Kui
Liang, Wei
Xu, Zhaojie
Wu, Yirong
Luo, Jinping
Zhuang, Chengyu
Cai, Xinxia
author_sort Xu, Shihong
collection PubMed
description Recent years have witnessed a spurt of progress in the application of the encoding and decoding of neural activities to drug screening, diseases diagnosis, and brain–computer interactions. To overcome the constraints of the complexity of the brain and the ethical considerations of in vivo research, neural chip platforms integrating microfluidic devices and microelectrode arrays have been raised, which can not only customize growth paths for neurons in vitro but also monitor and modulate the specialized neural networks grown on chips. Therefore, this article reviews the developmental history of chip platforms integrating microfluidic devices and microelectrode arrays. First, we review the design and application of advanced microelectrode arrays and microfluidic devices. After, we introduce the fabrication process of neural chip platforms. Finally, we highlight the recent progress on this type of chip platform as a research tool in the field of brain science and neuroscience, focusing on neuropharmacology, neurological diseases, and simplified brain models. This is a detailed and comprehensive review of neural chip platforms. This work aims to fulfill the following three goals: (1) summarize the latest design patterns and fabrication schemes of such platforms, providing a reference for the development of other new platforms; (2) generalize several important applications of chip platforms in the field of neurology, which will attract the attention of scientists in the field; and (3) propose the developmental direction of neural chip platforms integrating microfluidic devices and microelectrode arrays.
format Online
Article
Text
id pubmed-10145465
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101454652023-04-29 Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays Xu, Shihong Liu, Yaoyao Yang, Yan Zhang, Kui Liang, Wei Xu, Zhaojie Wu, Yirong Luo, Jinping Zhuang, Chengyu Cai, Xinxia Micromachines (Basel) Review Recent years have witnessed a spurt of progress in the application of the encoding and decoding of neural activities to drug screening, diseases diagnosis, and brain–computer interactions. To overcome the constraints of the complexity of the brain and the ethical considerations of in vivo research, neural chip platforms integrating microfluidic devices and microelectrode arrays have been raised, which can not only customize growth paths for neurons in vitro but also monitor and modulate the specialized neural networks grown on chips. Therefore, this article reviews the developmental history of chip platforms integrating microfluidic devices and microelectrode arrays. First, we review the design and application of advanced microelectrode arrays and microfluidic devices. After, we introduce the fabrication process of neural chip platforms. Finally, we highlight the recent progress on this type of chip platform as a research tool in the field of brain science and neuroscience, focusing on neuropharmacology, neurological diseases, and simplified brain models. This is a detailed and comprehensive review of neural chip platforms. This work aims to fulfill the following three goals: (1) summarize the latest design patterns and fabrication schemes of such platforms, providing a reference for the development of other new platforms; (2) generalize several important applications of chip platforms in the field of neurology, which will attract the attention of scientists in the field; and (3) propose the developmental direction of neural chip platforms integrating microfluidic devices and microelectrode arrays. MDPI 2023-03-23 /pmc/articles/PMC10145465/ /pubmed/37420942 http://dx.doi.org/10.3390/mi14040709 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Xu, Shihong
Liu, Yaoyao
Yang, Yan
Zhang, Kui
Liang, Wei
Xu, Zhaojie
Wu, Yirong
Luo, Jinping
Zhuang, Chengyu
Cai, Xinxia
Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays
title Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays
title_full Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays
title_fullStr Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays
title_full_unstemmed Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays
title_short Recent Progress and Perspectives on Neural Chip Platforms Integrating PDMS-Based Microfluidic Devices and Microelectrode Arrays
title_sort recent progress and perspectives on neural chip platforms integrating pdms-based microfluidic devices and microelectrode arrays
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145465/
https://www.ncbi.nlm.nih.gov/pubmed/37420942
http://dx.doi.org/10.3390/mi14040709
work_keys_str_mv AT xushihong recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT liuyaoyao recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT yangyan recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT zhangkui recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT liangwei recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT xuzhaojie recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT wuyirong recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT luojinping recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT zhuangchengyu recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays
AT caixinxia recentprogressandperspectivesonneuralchipplatformsintegratingpdmsbasedmicrofluidicdevicesandmicroelectrodearrays