Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity Patterns

Studies aimed at neurological drug discovery have been carried out both in vitro and in vivo. In vitro cell culture models have showed potential as drug testing platforms characterized by high throughput, low cost, good reproducibility and ease of handling and observation. However, in vitro neuronal...

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Main Authors: Yixuan Ming, Md Fayad Hasan, Svetlana Tatic-Lucic, Yevgeny Berdichevsky
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-10-01
Series:Frontiers in Neuroscience
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fnins.2020.563905/full
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spelling doaj-aad5387a6ea649229110bccfe3dabe7f2020-11-25T03:59:51ZengFrontiers Media S.A.Frontiers in Neuroscience1662-453X2020-10-011410.3389/fnins.2020.563905563905Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity PatternsYixuan Ming0Md Fayad Hasan1Svetlana Tatic-Lucic2Svetlana Tatic-Lucic3Yevgeny Berdichevsky4Yevgeny Berdichevsky5Department of Electrical & Computer Engineering, Lehigh University, Bethlehem, PA, United StatesDepartment of Electrical & Computer Engineering, Lehigh University, Bethlehem, PA, United StatesDepartment of Electrical & Computer Engineering, Lehigh University, Bethlehem, PA, United StatesDepartment of Bioengineering, Lehigh University, Bethlehem, PA, United StatesDepartment of Electrical & Computer Engineering, Lehigh University, Bethlehem, PA, United StatesDepartment of Bioengineering, Lehigh University, Bethlehem, PA, United StatesStudies aimed at neurological drug discovery have been carried out both in vitro and in vivo. In vitro cell culture models have showed potential as drug testing platforms characterized by high throughput, low cost, good reproducibility and ease of handling and observation. However, in vitro neuronal culture models are facing challenges in replicating in vivo-like activity patterns. This work reports an in vitro culture technique that is capable of producing micro three-dimensional (μ3D) cultures of only a few tens of neurons. The μ3D cultures generated by this method were uniform in size and density of neurons. These μ3D cultures had complex spontaneous synchronized neuronal activity patterns which were similar to those observed in the developing cortex and in much larger 3D cultures, but not in 2D cultures. Bursts could be reliably evoked by stimulation of single neurons. Synchronized bursts in μ3D cultures were abolished by inhibitors of glutamate receptors, while inhibitors of GABAA receptors had a more complex effect. This pharmacological profile is similar to bursts in neonatal cortex. Since large numbers of reproducible μ3D cultures can be created and observed in parallel, this model of the developing cortex may find applications in high-throughput drug discovery experiments.https://www.frontiersin.org/article/10.3389/fnins.2020.563905/full3D cultureneuroncalcium imagingPDMSmicrowellburst
collection DOAJ
language English
format Article
sources DOAJ
author Yixuan Ming
Md Fayad Hasan
Svetlana Tatic-Lucic
Svetlana Tatic-Lucic
Yevgeny Berdichevsky
Yevgeny Berdichevsky
spellingShingle Yixuan Ming
Md Fayad Hasan
Svetlana Tatic-Lucic
Svetlana Tatic-Lucic
Yevgeny Berdichevsky
Yevgeny Berdichevsky
Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity Patterns
Frontiers in Neuroscience
3D culture
neuron
calcium imaging
PDMS
microwell
burst
author_facet Yixuan Ming
Md Fayad Hasan
Svetlana Tatic-Lucic
Svetlana Tatic-Lucic
Yevgeny Berdichevsky
Yevgeny Berdichevsky
author_sort Yixuan Ming
title Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity Patterns
title_short Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity Patterns
title_full Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity Patterns
title_fullStr Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity Patterns
title_full_unstemmed Micro Three-Dimensional Neuronal Cultures Generate Developing Cortex-Like Activity Patterns
title_sort micro three-dimensional neuronal cultures generate developing cortex-like activity patterns
publisher Frontiers Media S.A.
series Frontiers in Neuroscience
issn 1662-453X
publishDate 2020-10-01
description Studies aimed at neurological drug discovery have been carried out both in vitro and in vivo. In vitro cell culture models have showed potential as drug testing platforms characterized by high throughput, low cost, good reproducibility and ease of handling and observation. However, in vitro neuronal culture models are facing challenges in replicating in vivo-like activity patterns. This work reports an in vitro culture technique that is capable of producing micro three-dimensional (μ3D) cultures of only a few tens of neurons. The μ3D cultures generated by this method were uniform in size and density of neurons. These μ3D cultures had complex spontaneous synchronized neuronal activity patterns which were similar to those observed in the developing cortex and in much larger 3D cultures, but not in 2D cultures. Bursts could be reliably evoked by stimulation of single neurons. Synchronized bursts in μ3D cultures were abolished by inhibitors of glutamate receptors, while inhibitors of GABAA receptors had a more complex effect. This pharmacological profile is similar to bursts in neonatal cortex. Since large numbers of reproducible μ3D cultures can be created and observed in parallel, this model of the developing cortex may find applications in high-throughput drug discovery experiments.
topic 3D culture
neuron
calcium imaging
PDMS
microwell
burst
url https://www.frontiersin.org/article/10.3389/fnins.2020.563905/full
work_keys_str_mv AT yixuanming microthreedimensionalneuronalculturesgeneratedevelopingcortexlikeactivitypatterns
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AT svetlanataticlucic microthreedimensionalneuronalculturesgeneratedevelopingcortexlikeactivitypatterns
AT svetlanataticlucic microthreedimensionalneuronalculturesgeneratedevelopingcortexlikeactivitypatterns
AT yevgenyberdichevsky microthreedimensionalneuronalculturesgeneratedevelopingcortexlikeactivitypatterns
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