Theoretical Design, Synthesis, and In Vitro Neurobiological Applications of a Highly Efficient Two-Photon Caged GABA Validated on an Epileptic Case

Bibliographic Details
Main Authors: Balázs Chiovini, Dénes Pálfi, Myrtill Majoros, Gábor Juhász, Gergely Szalay, Gergely Katona, Milán Szőri, Orsolya Frigyesi, Csilla Lukácsné Haveland, Gábor Szabó, Ferenc Erdélyi, Zoltán Máté, Zoltán Szadai, Miklós Madarász, Miklós Dékány, Imre G. Csizmadia, Ervin Kovács, Balázs Rózsa, Zoltán Mucsi
Format: Article
Language:English
Published: American Chemical Society 2021-06-01
Series:ACS Omega
Online Access:https://doi.org/10.1021/acsomega.1c01164
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author Balázs Chiovini
Dénes Pálfi
Myrtill Majoros
Gábor Juhász
Gergely Szalay
Gergely Katona
Milán Szőri
Orsolya Frigyesi
Csilla Lukácsné Haveland
Gábor Szabó
Ferenc Erdélyi
Zoltán Máté
Zoltán Szadai
Miklós Madarász
Miklós Dékány
Imre G. Csizmadia
Ervin Kovács
Balázs Rózsa
Zoltán Mucsi
author_facet Balázs Chiovini
Dénes Pálfi
Myrtill Majoros
Gábor Juhász
Gergely Szalay
Gergely Katona
Milán Szőri
Orsolya Frigyesi
Csilla Lukácsné Haveland
Gábor Szabó
Ferenc Erdélyi
Zoltán Máté
Zoltán Szadai
Miklós Madarász
Miklós Dékány
Imre G. Csizmadia
Ervin Kovács
Balázs Rózsa
Zoltán Mucsi
author_sort Balázs Chiovini
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publishDate 2021-06-01
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spelling doaj.art-84c4c51664944e69b7cc4f9f0f1499ce2022-12-21T23:17:07ZengAmerican Chemical SocietyACS Omega2470-13432021-06-01623150291504510.1021/acsomega.1c01164Theoretical Design, Synthesis, and In Vitro Neurobiological Applications of a Highly Efficient Two-Photon Caged GABA Validated on an Epileptic CaseBalázs Chiovini0Dénes Pálfi1Myrtill Majoros2Gábor Juhász3Gergely Szalay4Gergely Katona5Milán Szőri6Orsolya Frigyesi7Csilla Lukácsné Haveland8Gábor Szabó9Ferenc Erdélyi10Zoltán Máté11Zoltán Szadai12Miklós Madarász13Miklós Dékány14Imre G. Csizmadia15Ervin Kovács16Balázs Rózsa17Zoltán Mucsi18The Faculty of Information Technology, Pázmány Péter Catholic University, Budapest, HungaryThe Faculty of Information Technology, Pázmány Péter Catholic University, Budapest, HungaryThe Faculty of Information Technology, Pázmány Péter Catholic University, Budapest, HungaryThe Faculty of Information Technology, Pázmány Péter Catholic University, Budapest, HungaryLaboratory of 3D Functional Network and Dendritic Imaging, Institute of Experimental Medicine, Budapest, HungaryLaboratory of 3D Functional Network and Dendritic Imaging, Institute of Experimental Medicine, Budapest, HungaryInstitute of Chemistry, Faculty of Materials Science and Engineering, University of Miskolc, Miskolc, HungaryChemistry Department, Femtonics Limited, Budapest, HungaryChemistry Department, Femtonics Limited, Budapest, HungaryTransgenic Facility, Institute of Experimental Medicine, Budapest, HungaryTransgenic Facility, Institute of Experimental Medicine, Budapest, HungaryTransgenic Facility, Institute of Experimental Medicine, Budapest, HungaryThe Faculty of Information Technology, Pázmány Péter Catholic University, Budapest, HungaryLaboratory of 3D Functional Network and Dendritic Imaging, Institute of Experimental Medicine, Budapest, HungaryGedeon Richter Plc, Budapest, HungaryDepartment of Chemistry, University of Toronto, Toronto, Ontario, CanadaChemistry Department, Femtonics Limited, Budapest, HungaryThe Faculty of Information Technology, Pázmány Péter Catholic University, Budapest, HungaryInstitute of Chemistry, Faculty of Materials Science and Engineering, University of Miskolc, Miskolc, Hungaryhttps://doi.org/10.1021/acsomega.1c01164
spellingShingle Balázs Chiovini
Dénes Pálfi
Myrtill Majoros
Gábor Juhász
Gergely Szalay
Gergely Katona
Milán Szőri
Orsolya Frigyesi
Csilla Lukácsné Haveland
Gábor Szabó
Ferenc Erdélyi
Zoltán Máté
Zoltán Szadai
Miklós Madarász
Miklós Dékány
Imre G. Csizmadia
Ervin Kovács
Balázs Rózsa
Zoltán Mucsi
Theoretical Design, Synthesis, and In Vitro Neurobiological Applications of a Highly Efficient Two-Photon Caged GABA Validated on an Epileptic Case
ACS Omega
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://doi.org/10.1021/acsomega.1c01164
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