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Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids

Three-dimensional (3D), submillimeter-scale constructs of neural cells, known as cortical spheroids, are of rapidly growing importance in biological research because these systems reproduce complex features of the brain in vitro. Despite their great potential for studies of neurodevelopment and neur...

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Autores principales: Park, Yoonseok, Franz, Colin K., Ryu, Hanjun, Luan, Haiwen, Cotton, Kristen Y., Kim, Jong Uk, Chung, Ted S., Zhao, Shiwei, Vazquez-Guardado, Abraham, Yang, Da Som, Li, Kan, Avila, Raudel, Phillips, Jack K., Quezada, Maria J., Jang, Hokyung, Kwak, Sung Soo, Won, Sang Min, Kwon, Kyeongha, Jeong, Hyoyoung, Bandodkar, Amay J., Han, Mengdi, Zhao, Hangbo, Osher, Gabrielle R., Wang, Heling, Lee, KunHyuck, Zhang, Yihui, Huang, Yonggang, Finan, John D., Rogers, John A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7968849/
https://www.ncbi.nlm.nih.gov/pubmed/33731359
http://dx.doi.org/10.1126/sciadv.abf9153
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author Park, Yoonseok
Franz, Colin K.
Ryu, Hanjun
Luan, Haiwen
Cotton, Kristen Y.
Kim, Jong Uk
Chung, Ted S.
Zhao, Shiwei
Vazquez-Guardado, Abraham
Yang, Da Som
Li, Kan
Avila, Raudel
Phillips, Jack K.
Quezada, Maria J.
Jang, Hokyung
Kwak, Sung Soo
Won, Sang Min
Kwon, Kyeongha
Jeong, Hyoyoung
Bandodkar, Amay J.
Han, Mengdi
Zhao, Hangbo
Osher, Gabrielle R.
Wang, Heling
Lee, KunHyuck
Zhang, Yihui
Huang, Yonggang
Finan, John D.
Rogers, John A.
author_facet Park, Yoonseok
Franz, Colin K.
Ryu, Hanjun
Luan, Haiwen
Cotton, Kristen Y.
Kim, Jong Uk
Chung, Ted S.
Zhao, Shiwei
Vazquez-Guardado, Abraham
Yang, Da Som
Li, Kan
Avila, Raudel
Phillips, Jack K.
Quezada, Maria J.
Jang, Hokyung
Kwak, Sung Soo
Won, Sang Min
Kwon, Kyeongha
Jeong, Hyoyoung
Bandodkar, Amay J.
Han, Mengdi
Zhao, Hangbo
Osher, Gabrielle R.
Wang, Heling
Lee, KunHyuck
Zhang, Yihui
Huang, Yonggang
Finan, John D.
Rogers, John A.
author_sort Park, Yoonseok
collection PubMed
description Three-dimensional (3D), submillimeter-scale constructs of neural cells, known as cortical spheroids, are of rapidly growing importance in biological research because these systems reproduce complex features of the brain in vitro. Despite their great potential for studies of neurodevelopment and neurological disease modeling, 3D living objects cannot be studied easily using conventional approaches to neuromodulation, sensing, and manipulation. Here, we introduce classes of microfabricated 3D frameworks as compliant, multifunctional neural interfaces to spheroids and to assembloids. Electrical, optical, chemical, and thermal interfaces to cortical spheroids demonstrate some of the capabilities. Complex architectures and high-resolution features highlight the design versatility. Detailed studies of the spreading of coordinated bursting events across the surface of an isolated cortical spheroid and of the cascade of processes associated with formation and regrowth of bridging tissues across a pair of such spheroids represent two of the many opportunities in basic neuroscience research enabled by these platforms.
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spelling pubmed-79688492021-03-31 Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids Park, Yoonseok Franz, Colin K. Ryu, Hanjun Luan, Haiwen Cotton, Kristen Y. Kim, Jong Uk Chung, Ted S. Zhao, Shiwei Vazquez-Guardado, Abraham Yang, Da Som Li, Kan Avila, Raudel Phillips, Jack K. Quezada, Maria J. Jang, Hokyung Kwak, Sung Soo Won, Sang Min Kwon, Kyeongha Jeong, Hyoyoung Bandodkar, Amay J. Han, Mengdi Zhao, Hangbo Osher, Gabrielle R. Wang, Heling Lee, KunHyuck Zhang, Yihui Huang, Yonggang Finan, John D. Rogers, John A. Sci Adv Research Articles Three-dimensional (3D), submillimeter-scale constructs of neural cells, known as cortical spheroids, are of rapidly growing importance in biological research because these systems reproduce complex features of the brain in vitro. Despite their great potential for studies of neurodevelopment and neurological disease modeling, 3D living objects cannot be studied easily using conventional approaches to neuromodulation, sensing, and manipulation. Here, we introduce classes of microfabricated 3D frameworks as compliant, multifunctional neural interfaces to spheroids and to assembloids. Electrical, optical, chemical, and thermal interfaces to cortical spheroids demonstrate some of the capabilities. Complex architectures and high-resolution features highlight the design versatility. Detailed studies of the spreading of coordinated bursting events across the surface of an isolated cortical spheroid and of the cascade of processes associated with formation and regrowth of bridging tissues across a pair of such spheroids represent two of the many opportunities in basic neuroscience research enabled by these platforms. American Association for the Advancement of Science 2021-03-17 /pmc/articles/PMC7968849/ /pubmed/33731359 http://dx.doi.org/10.1126/sciadv.abf9153 Text en Copyright © 2021 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Research Articles
Park, Yoonseok
Franz, Colin K.
Ryu, Hanjun
Luan, Haiwen
Cotton, Kristen Y.
Kim, Jong Uk
Chung, Ted S.
Zhao, Shiwei
Vazquez-Guardado, Abraham
Yang, Da Som
Li, Kan
Avila, Raudel
Phillips, Jack K.
Quezada, Maria J.
Jang, Hokyung
Kwak, Sung Soo
Won, Sang Min
Kwon, Kyeongha
Jeong, Hyoyoung
Bandodkar, Amay J.
Han, Mengdi
Zhao, Hangbo
Osher, Gabrielle R.
Wang, Heling
Lee, KunHyuck
Zhang, Yihui
Huang, Yonggang
Finan, John D.
Rogers, John A.
Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
title Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
title_full Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
title_fullStr Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
title_full_unstemmed Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
title_short Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
title_sort three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7968849/
https://www.ncbi.nlm.nih.gov/pubmed/33731359
http://dx.doi.org/10.1126/sciadv.abf9153
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