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Theoretical Design, Synthesis, and In Vitro Neurobiological Applications of a Highly Efficient Two-Photon Caged GABA Validated on an Epileptic Case
[Image: see text] In this paper, we present an additional, new cage-GABA compound, called 4-amino-1-(4′-dimethylaminoisopropoxy-5′,7′-dinitro-2′,3′-dihydro-indol-1-yl)-1-oxobutane-γ-aminobutyric acid (iDMPO-DNI-GABA), and currently, this compound is the only photoreagent, which can be applied for GA...
Autores principales: | , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2021
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8210458/ https://www.ncbi.nlm.nih.gov/pubmed/34151084 http://dx.doi.org/10.1021/acsomega.1c01164 |
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author | Chiovini, Balázs Pálfi, Dénes Majoros, Myrtill Juhász, Gábor Szalay, Gergely Katona, Gergely Szőri, Milán Frigyesi, Orsolya Lukácsné Haveland, Csilla Szabó, Gábor Erdélyi, Ferenc Máté, Zoltán Szadai, Zoltán Madarász, Miklós Dékány, Miklós Csizmadia, Imre G. Kovács, Ervin Rózsa, Balázs Mucsi, Zoltán |
author_facet | Chiovini, Balázs Pálfi, Dénes Majoros, Myrtill Juhász, Gábor Szalay, Gergely Katona, Gergely Szőri, Milán Frigyesi, Orsolya Lukácsné Haveland, Csilla Szabó, Gábor Erdélyi, Ferenc Máté, Zoltán Szadai, Zoltán Madarász, Miklós Dékány, Miklós Csizmadia, Imre G. Kovács, Ervin Rózsa, Balázs Mucsi, Zoltán |
author_sort | Chiovini, Balázs |
collection | PubMed |
description | [Image: see text] In this paper, we present an additional, new cage-GABA compound, called 4-amino-1-(4′-dimethylaminoisopropoxy-5′,7′-dinitro-2′,3′-dihydro-indol-1-yl)-1-oxobutane-γ-aminobutyric acid (iDMPO-DNI-GABA), and currently, this compound is the only photoreagent, which can be applied for GABA uncaging without experimental compromises. By a systematic theoretical design and successful synthesis of several compounds, the best reagent exhibits a high two-photon efficiency within the 700–760 nm range with excellent pharmacological behavior, which proved to be suitable for a complex epileptic study. Quantum chemical design showed that the optimal length of the cationic side chain enhances the two-photon absorption by 1 order of magnitude due to the cooperating internal hydrogen bonding to the extra nitro group on the core. This feature increased solubility while suppressing membrane permeability. The efficiency was demonstrated in a systematic, wide range of in vitro single-cell neurophysiological experiments by electrophysiological as well as calcium imaging techniques. Scalable inhibitory ion currents were elicited by iDMPO-DNI-GABA with appropriate spatial–temporal precision, blocking both spontaneous and evoked cell activity with excellent efficiency. Additionally, to demonstrate its applicability in a real neurobiological study, we could smoothly and selectively modulate neuronal activities during artificial epileptic rhythms first time in a neural network of GCaMP6f transgenic mouse brain slices. |
format | Online Article Text |
id | pubmed-8210458 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-82104582021-06-17 Theoretical Design, Synthesis, and In Vitro Neurobiological Applications of a Highly Efficient Two-Photon Caged GABA Validated on an Epileptic Case Chiovini, Balázs Pálfi, Dénes Majoros, Myrtill Juhász, Gábor Szalay, Gergely Katona, Gergely Szőri, Milán Frigyesi, Orsolya Lukácsné Haveland, Csilla Szabó, Gábor Erdélyi, Ferenc Máté, Zoltán Szadai, Zoltán Madarász, Miklós Dékány, Miklós Csizmadia, Imre G. Kovács, Ervin Rózsa, Balázs Mucsi, Zoltán ACS Omega [Image: see text] In this paper, we present an additional, new cage-GABA compound, called 4-amino-1-(4′-dimethylaminoisopropoxy-5′,7′-dinitro-2′,3′-dihydro-indol-1-yl)-1-oxobutane-γ-aminobutyric acid (iDMPO-DNI-GABA), and currently, this compound is the only photoreagent, which can be applied for GABA uncaging without experimental compromises. By a systematic theoretical design and successful synthesis of several compounds, the best reagent exhibits a high two-photon efficiency within the 700–760 nm range with excellent pharmacological behavior, which proved to be suitable for a complex epileptic study. Quantum chemical design showed that the optimal length of the cationic side chain enhances the two-photon absorption by 1 order of magnitude due to the cooperating internal hydrogen bonding to the extra nitro group on the core. This feature increased solubility while suppressing membrane permeability. The efficiency was demonstrated in a systematic, wide range of in vitro single-cell neurophysiological experiments by electrophysiological as well as calcium imaging techniques. Scalable inhibitory ion currents were elicited by iDMPO-DNI-GABA with appropriate spatial–temporal precision, blocking both spontaneous and evoked cell activity with excellent efficiency. Additionally, to demonstrate its applicability in a real neurobiological study, we could smoothly and selectively modulate neuronal activities during artificial epileptic rhythms first time in a neural network of GCaMP6f transgenic mouse brain slices. American Chemical Society 2021-06-03 /pmc/articles/PMC8210458/ /pubmed/34151084 http://dx.doi.org/10.1021/acsomega.1c01164 Text en © 2021 The Authors. Published by American Chemical Society Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Chiovini, Balázs Pálfi, Dénes Majoros, Myrtill Juhász, Gábor Szalay, Gergely Katona, Gergely Szőri, Milán Frigyesi, Orsolya Lukácsné Haveland, Csilla Szabó, Gábor Erdélyi, Ferenc Máté, Zoltán Szadai, Zoltán Madarász, Miklós Dékány, Miklós Csizmadia, Imre G. Kovács, Ervin Rózsa, Balázs Mucsi, Zoltán Theoretical Design, Synthesis, and In Vitro Neurobiological Applications of a Highly Efficient Two-Photon Caged GABA Validated on an Epileptic Case |
title | Theoretical Design, Synthesis, and In Vitro Neurobiological
Applications of a Highly Efficient Two-Photon Caged GABA Validated
on an Epileptic Case |
title_full | Theoretical Design, Synthesis, and In Vitro Neurobiological
Applications of a Highly Efficient Two-Photon Caged GABA Validated
on an Epileptic Case |
title_fullStr | Theoretical Design, Synthesis, and In Vitro Neurobiological
Applications of a Highly Efficient Two-Photon Caged GABA Validated
on an Epileptic Case |
title_full_unstemmed | Theoretical Design, Synthesis, and In Vitro Neurobiological
Applications of a Highly Efficient Two-Photon Caged GABA Validated
on an Epileptic Case |
title_short | Theoretical Design, Synthesis, and In Vitro Neurobiological
Applications of a Highly Efficient Two-Photon Caged GABA Validated
on an Epileptic Case |
title_sort | theoretical design, synthesis, and in vitro neurobiological
applications of a highly efficient two-photon caged gaba validated
on an epileptic case |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8210458/ https://www.ncbi.nlm.nih.gov/pubmed/34151084 http://dx.doi.org/10.1021/acsomega.1c01164 |
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