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Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays

Mature rat cortical neuronal networks cultured on multi-electrode arrays (MEAs) are known to show spontaneous synchronized bursts accompanied by independent single spikes. The spontaneous synchronized bursts can be inhibited by Xe gas. In this study, we adjust the Xe gas pressure to control the amou...

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Autores principales: Uchida, Tsutomu, Shimada, Koichiro, Tanabe, Ryutaro, Kubota, Tatsuya, Ito, Daisuke, Yamazaki, Kenji, Gohara, Kazutoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6084913/
https://www.ncbi.nlm.nih.gov/pubmed/30135941
http://dx.doi.org/10.1016/j.ibror.2017.09.001
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author Uchida, Tsutomu
Shimada, Koichiro
Tanabe, Ryutaro
Kubota, Tatsuya
Ito, Daisuke
Yamazaki, Kenji
Gohara, Kazutoshi
author_facet Uchida, Tsutomu
Shimada, Koichiro
Tanabe, Ryutaro
Kubota, Tatsuya
Ito, Daisuke
Yamazaki, Kenji
Gohara, Kazutoshi
author_sort Uchida, Tsutomu
collection PubMed
description Mature rat cortical neuronal networks cultured on multi-electrode arrays (MEAs) are known to show spontaneous synchronized bursts accompanied by independent single spikes. The spontaneous synchronized bursts can be inhibited by Xe gas. In this study, we adjust the Xe gas pressure to control the amount of Xe in a neuron-cultured MEA medium. We show that the synchronized bursts cease completely within several minutes by applying Xe gas at partial pressures above 0.3 MPa. After depressurizing and purging with fresh air, the synchronized bursts recover to their original frequency. Thus, we confirmed that Xe acts as a network-activity inhibitor of the cultured neuronal network on MEAs. But below 0.3 MPa, the synchronized bursts are inhibited only partially, depending on the Xe partial pressure. Based on the partial-pressure influence on the change of the neuronal network activities, we find the critical concentration of Xe for the inhibition effect to be approximately 9.5 mM, a value above which more than 90% of the synchronized burst activity is inhibited. Further systematic observations with Xe-air mixed gases show that pressurized air with a small amount of Xe suppresses the inhibition of synchronized bursts, suggesting an air component that can accelerate the synchronized bursts.
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spelling pubmed-60849132018-08-22 Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays Uchida, Tsutomu Shimada, Koichiro Tanabe, Ryutaro Kubota, Tatsuya Ito, Daisuke Yamazaki, Kenji Gohara, Kazutoshi IBRO Rep Article Mature rat cortical neuronal networks cultured on multi-electrode arrays (MEAs) are known to show spontaneous synchronized bursts accompanied by independent single spikes. The spontaneous synchronized bursts can be inhibited by Xe gas. In this study, we adjust the Xe gas pressure to control the amount of Xe in a neuron-cultured MEA medium. We show that the synchronized bursts cease completely within several minutes by applying Xe gas at partial pressures above 0.3 MPa. After depressurizing and purging with fresh air, the synchronized bursts recover to their original frequency. Thus, we confirmed that Xe acts as a network-activity inhibitor of the cultured neuronal network on MEAs. But below 0.3 MPa, the synchronized bursts are inhibited only partially, depending on the Xe partial pressure. Based on the partial-pressure influence on the change of the neuronal network activities, we find the critical concentration of Xe for the inhibition effect to be approximately 9.5 mM, a value above which more than 90% of the synchronized burst activity is inhibited. Further systematic observations with Xe-air mixed gases show that pressurized air with a small amount of Xe suppresses the inhibition of synchronized bursts, suggesting an air component that can accelerate the synchronized bursts. Elsevier 2017-09-08 /pmc/articles/PMC6084913/ /pubmed/30135941 http://dx.doi.org/10.1016/j.ibror.2017.09.001 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Uchida, Tsutomu
Shimada, Koichiro
Tanabe, Ryutaro
Kubota, Tatsuya
Ito, Daisuke
Yamazaki, Kenji
Gohara, Kazutoshi
Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays
title Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays
title_full Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays
title_fullStr Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays
title_full_unstemmed Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays
title_short Xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays
title_sort xenon pressure dependence on the synchronized burst inhibition of rat cortical neuronal network cultured on multi-electrode arrays
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6084913/
https://www.ncbi.nlm.nih.gov/pubmed/30135941
http://dx.doi.org/10.1016/j.ibror.2017.09.001
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