Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling

Reyes Ábalos, Ana Laura - Álvarez Zabaleta, Magdalena - Olivera-Bravo, Silvia - Di Tomaso, María Vittoria

Resumen:

Astrocytes maintain CNS homeostasis but also critically contribute to neurological and psychiatric disorders. Such functional diversity implies an extensive signaling repertoire including extracellular vesicles (EVs) and nanotubes (NTs) that could be involved in protection or damage, as widely shown in various experimental paradigms. However, there is no information associating primary damage to the astrocyte genome, the DNA damage response (DDR), and the EV and NT repertoire. Furthermore, similar studies were not performed on hippocampal astrocytes despite their involvement in memory and learning processes, as well as in the development and maintenance of alcohol addiction. By exposing murine hippocampal astrocytes to 400 mM ethanol (EtOH) and/or 1 μM corticosterone (CTS) for 1 h, we tested whether the induced DNA damage and DDR could elicit significant changes in NTs and surface-attached EVs. Genetic damage and initial DDR were assessed by immunolabeling against the phosphorylated histone variant H2AX (γH2AX), DDR-dependent apoptosis by BAX immunoreactivity, and astrocyte activation by the glial acidic fibrillary protein (GFAP) and phalloidin staining. Surface-attached EVs and NTs were examined via scanning electron microscopy, and labeled proteins were analyzed via confocal microscopy. Relative to controls, astrocytes exposed to EtOH, CTS, or EtOH+CTS showed significant increases in nuclear γlH2AX foci, nuclear and cytoplasmic BAX signals, and EV frequency at the expense of the NT amount, mainly upon EtOH, without detectable signs of morphological reactivity. Furthermore, the largest and most complex EVs originated only in DNA-damaged astrocytes. Obtained results revealed that astrocytes exposed to acute EtOH and/or CTS preserved their typical morphology but presented severe DNA damage, triggered canonical DDR pathways, and early changes in the cell signaling mediated by EVs and NTs. Further deepening of this initial morphological and quantitative analysis is necessary to identify the mechanistic links between genetic damage, DDR, cell-cell communication, and their possible impact on hippocampal neural cells.

Detalles Bibliográficos
2024
Genetic damage
Ethanol
Corticosterone
Inglés
Universidad de la República
COLIBRI
https://hdl.handle.net/20.500.12008/51062
Acceso abierto
Licencia Creative Commons Atribución (CC - By 4.0)
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author Reyes Ábalos, Ana Laura
author2 Álvarez Zabaleta, Magdalena
Olivera-Bravo, Silvia
Di Tomaso, María Vittoria
author2_role author
author
author
author_facet Reyes Ábalos, Ana Laura
Álvarez Zabaleta, Magdalena
Olivera-Bravo, Silvia
Di Tomaso, María Vittoria
author_role author
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dc.contributor.filiacion.none.fl_str_mv Reyes Ábalos Ana Laura, Universidad de la República (Uruguay). Facultad de Ciencias. Unidad de Microscopía.
Álvarez Zabaleta Magdalena, IIBCE
Olivera-Bravo Silvia, IIBCE
Di Tomaso María Vittoria, IIBCE
dc.creator.none.fl_str_mv Reyes Ábalos, Ana Laura
Álvarez Zabaleta, Magdalena
Olivera-Bravo, Silvia
Di Tomaso, María Vittoria
dc.date.accessioned.none.fl_str_mv 2025-08-15T17:41:49Z
dc.date.available.none.fl_str_mv 2025-08-15T17:41:49Z
dc.date.issued.none.fl_str_mv 2024
dc.description.abstract.none.fl_txt_mv Astrocytes maintain CNS homeostasis but also critically contribute to neurological and psychiatric disorders. Such functional diversity implies an extensive signaling repertoire including extracellular vesicles (EVs) and nanotubes (NTs) that could be involved in protection or damage, as widely shown in various experimental paradigms. However, there is no information associating primary damage to the astrocyte genome, the DNA damage response (DDR), and the EV and NT repertoire. Furthermore, similar studies were not performed on hippocampal astrocytes despite their involvement in memory and learning processes, as well as in the development and maintenance of alcohol addiction. By exposing murine hippocampal astrocytes to 400 mM ethanol (EtOH) and/or 1 μM corticosterone (CTS) for 1 h, we tested whether the induced DNA damage and DDR could elicit significant changes in NTs and surface-attached EVs. Genetic damage and initial DDR were assessed by immunolabeling against the phosphorylated histone variant H2AX (γH2AX), DDR-dependent apoptosis by BAX immunoreactivity, and astrocyte activation by the glial acidic fibrillary protein (GFAP) and phalloidin staining. Surface-attached EVs and NTs were examined via scanning electron microscopy, and labeled proteins were analyzed via confocal microscopy. Relative to controls, astrocytes exposed to EtOH, CTS, or EtOH+CTS showed significant increases in nuclear γlH2AX foci, nuclear and cytoplasmic BAX signals, and EV frequency at the expense of the NT amount, mainly upon EtOH, without detectable signs of morphological reactivity. Furthermore, the largest and most complex EVs originated only in DNA-damaged astrocytes. Obtained results revealed that astrocytes exposed to acute EtOH and/or CTS preserved their typical morphology but presented severe DNA damage, triggered canonical DDR pathways, and early changes in the cell signaling mediated by EVs and NTs. Further deepening of this initial morphological and quantitative analysis is necessary to identify the mechanistic links between genetic damage, DDR, cell-cell communication, and their possible impact on hippocampal neural cells.
dc.format.extent.es.fl_str_mv 21 h
dc.format.mimetype.es.fl_str_mv application/pdf
dc.identifier.citation.es.fl_str_mv Reyes Ábalos, A, Álvarez Zabaleta, M, Olivera-Bravo, S [y otro autor]. "Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling". International Journal of Cell Biology. [en línea] 2024: 5524487. 21 h. DOI: 10.1155/2024/5524487
dc.identifier.doi.none.fl_str_mv 10.1155/2024/5524487
dc.identifier.issn.none.fl_str_mv 1687-8884
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12008/51062
dc.language.iso.none.fl_str_mv en
eng
dc.publisher.es.fl_str_mv Wiley
dc.relation.none.fl_str_mv International Journal of Cell Biology, 2024: 5524487.
dc.rights.license.none.fl_str_mv Licencia Creative Commons Atribución (CC - By 4.0)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:COLIBRI
instname:Universidad de la República
instacron:Universidad de la República
dc.subject.es.fl_str_mv Genetic damage
Ethanol
Corticosterone
dc.title.none.fl_str_mv Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
dc.type.es.fl_str_mv Artículo
dc.type.none.fl_str_mv info:eu-repo/semantics/article
dc.type.version.none.fl_str_mv info:eu-repo/semantics/publishedVersion
description Astrocytes maintain CNS homeostasis but also critically contribute to neurological and psychiatric disorders. Such functional diversity implies an extensive signaling repertoire including extracellular vesicles (EVs) and nanotubes (NTs) that could be involved in protection or damage, as widely shown in various experimental paradigms. However, there is no information associating primary damage to the astrocyte genome, the DNA damage response (DDR), and the EV and NT repertoire. Furthermore, similar studies were not performed on hippocampal astrocytes despite their involvement in memory and learning processes, as well as in the development and maintenance of alcohol addiction. By exposing murine hippocampal astrocytes to 400 mM ethanol (EtOH) and/or 1 μM corticosterone (CTS) for 1 h, we tested whether the induced DNA damage and DDR could elicit significant changes in NTs and surface-attached EVs. Genetic damage and initial DDR were assessed by immunolabeling against the phosphorylated histone variant H2AX (γH2AX), DDR-dependent apoptosis by BAX immunoreactivity, and astrocyte activation by the glial acidic fibrillary protein (GFAP) and phalloidin staining. Surface-attached EVs and NTs were examined via scanning electron microscopy, and labeled proteins were analyzed via confocal microscopy. Relative to controls, astrocytes exposed to EtOH, CTS, or EtOH+CTS showed significant increases in nuclear γlH2AX foci, nuclear and cytoplasmic BAX signals, and EV frequency at the expense of the NT amount, mainly upon EtOH, without detectable signs of morphological reactivity. Furthermore, the largest and most complex EVs originated only in DNA-damaged astrocytes. Obtained results revealed that astrocytes exposed to acute EtOH and/or CTS preserved their typical morphology but presented severe DNA damage, triggered canonical DDR pathways, and early changes in the cell signaling mediated by EVs and NTs. Further deepening of this initial morphological and quantitative analysis is necessary to identify the mechanistic links between genetic damage, DDR, cell-cell communication, and their possible impact on hippocampal neural cells.
eu_rights_str_mv openAccess
format article
id COLIBRI_46cf1fa71ad822bb641179a8ca0be7ce
identifier_str_mv Reyes Ábalos, A, Álvarez Zabaleta, M, Olivera-Bravo, S [y otro autor]. "Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling". International Journal of Cell Biology. [en línea] 2024: 5524487. 21 h. DOI: 10.1155/2024/5524487
1687-8884
10.1155/2024/5524487
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instname_str Universidad de la República
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publishDate 2024
reponame_str COLIBRI
repository.mail.fl_str_mv karina.camps@seciu.edu.uy
repository.name.fl_str_mv COLIBRI - Universidad de la República
repository_id_str 4771
rights_invalid_str_mv Licencia Creative Commons Atribución (CC - By 4.0)
spelling Reyes Ábalos Ana Laura, Universidad de la República (Uruguay). Facultad de Ciencias. Unidad de Microscopía.Álvarez Zabaleta Magdalena, IIBCEOlivera-Bravo Silvia, IIBCEDi Tomaso María Vittoria, IIBCE2025-08-15T17:41:49Z2025-08-15T17:41:49Z2024Reyes Ábalos, A, Álvarez Zabaleta, M, Olivera-Bravo, S [y otro autor]. "Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling". International Journal of Cell Biology. [en línea] 2024: 5524487. 21 h. DOI: 10.1155/2024/55244871687-8884https://hdl.handle.net/20.500.12008/5106210.1155/2024/5524487Astrocytes maintain CNS homeostasis but also critically contribute to neurological and psychiatric disorders. Such functional diversity implies an extensive signaling repertoire including extracellular vesicles (EVs) and nanotubes (NTs) that could be involved in protection or damage, as widely shown in various experimental paradigms. However, there is no information associating primary damage to the astrocyte genome, the DNA damage response (DDR), and the EV and NT repertoire. Furthermore, similar studies were not performed on hippocampal astrocytes despite their involvement in memory and learning processes, as well as in the development and maintenance of alcohol addiction. By exposing murine hippocampal astrocytes to 400 mM ethanol (EtOH) and/or 1 μM corticosterone (CTS) for 1 h, we tested whether the induced DNA damage and DDR could elicit significant changes in NTs and surface-attached EVs. Genetic damage and initial DDR were assessed by immunolabeling against the phosphorylated histone variant H2AX (γH2AX), DDR-dependent apoptosis by BAX immunoreactivity, and astrocyte activation by the glial acidic fibrillary protein (GFAP) and phalloidin staining. Surface-attached EVs and NTs were examined via scanning electron microscopy, and labeled proteins were analyzed via confocal microscopy. Relative to controls, astrocytes exposed to EtOH, CTS, or EtOH+CTS showed significant increases in nuclear γlH2AX foci, nuclear and cytoplasmic BAX signals, and EV frequency at the expense of the NT amount, mainly upon EtOH, without detectable signs of morphological reactivity. Furthermore, the largest and most complex EVs originated only in DNA-damaged astrocytes. Obtained results revealed that astrocytes exposed to acute EtOH and/or CTS preserved their typical morphology but presented severe DNA damage, triggered canonical DDR pathways, and early changes in the cell signaling mediated by EVs and NTs. Further deepening of this initial morphological and quantitative analysis is necessary to identify the mechanistic links between genetic damage, DDR, cell-cell communication, and their possible impact on hippocampal neural cells.Submitted by Pintos Natalia (nataliapintosmvd@gmail.com) on 2025-08-13T16:08:41Z No. of bitstreams: 2 license_rdf: 24942 bytes, checksum: 58cb336ce230a47d2f88ad02838a665f (MD5) 10.1155-2024-5524487.pdf: 5854768 bytes, checksum: 8e384fd2ed1f2d4fbe797329c5285fd3 (MD5)Approved for entry into archive by Faget Cecilia (lfaget@fcien.edu.uy) on 2025-08-13T17:54:47Z (GMT) No. of bitstreams: 2 license_rdf: 24942 bytes, checksum: 58cb336ce230a47d2f88ad02838a665f (MD5) 10.1155-2024-5524487.pdf: 5854768 bytes, checksum: 8e384fd2ed1f2d4fbe797329c5285fd3 (MD5)Made available in DSpace by Luna Fabiana (fabiana.luna@seciu.edu.uy) on 2025-08-15T17:41:49Z (GMT). No. of bitstreams: 2 license_rdf: 24942 bytes, checksum: 58cb336ce230a47d2f88ad02838a665f (MD5) 10.1155-2024-5524487.pdf: 5854768 bytes, checksum: 8e384fd2ed1f2d4fbe797329c5285fd3 (MD5) Previous issue date: 202421 happlication/pdfenengWileyInternational Journal of Cell Biology, 2024: 5524487.Las obras depositadas en el Repositorio se rigen por la Ordenanza de los Derechos de la Propiedad Intelectual de la Universidad de la República.(Res. Nº 91 de C.D.C. de 8/III/1994 – D.O. 7/IV/1994) y por la Ordenanza del Repositorio Abierto de la Universidad de la República (Res. 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públicahttps://udelar.edu.uy/https://www.colibri.udelar.edu.uy/oai/requestkarina.camps@seciu.edu.uyUruguayopendoar:47712025-08-15T17:41:49COLIBRI - Universidad de la Repúblicafalse
spellingShingle Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
Reyes Ábalos, Ana Laura
Genetic damage
Ethanol
Corticosterone
status_str publishedVersion
title Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
title_full Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
title_fullStr Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
title_full_unstemmed Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
title_short Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
title_sort Acute genetic damage induced by ethanol and corticosterone seems to modulate hippocampal astrocyte signaling
topic Genetic damage
Ethanol
Corticosterone
url https://hdl.handle.net/20.500.12008/51062