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Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival

Chronic hypoxemia, as evidenced in de-acclimatized high-altitude residents or in patients with chronic obstructive respiratory disorders, is a common medical condition that can produce serious neurological alterations. However, the pathogenesis of this phenomenon is unknown. We have found that adult...

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Autores principales: d’Anglemont de Tassigny, Xavier, Sirerol-Piquer, M Salomé, Gómez-Pinedo, Ulises, Pardal, Ricardo, Bonilla, Sonia, Capilla-Gonzalez, Vivian, López-López, Ivette, De la Torre-Laviana, Francisco Javier, García-Verdugo, José Manuel, López-Barneo, José
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5045070/
https://www.ncbi.nlm.nih.gov/pubmed/27774479
http://dx.doi.org/10.2147/HP.S78248
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author d’Anglemont de Tassigny, Xavier
Sirerol-Piquer, M Salomé
Gómez-Pinedo, Ulises
Pardal, Ricardo
Bonilla, Sonia
Capilla-Gonzalez, Vivian
López-López, Ivette
De la Torre-Laviana, Francisco Javier
García-Verdugo, José Manuel
López-Barneo, José
author_facet d’Anglemont de Tassigny, Xavier
Sirerol-Piquer, M Salomé
Gómez-Pinedo, Ulises
Pardal, Ricardo
Bonilla, Sonia
Capilla-Gonzalez, Vivian
López-López, Ivette
De la Torre-Laviana, Francisco Javier
García-Verdugo, José Manuel
López-Barneo, José
author_sort d’Anglemont de Tassigny, Xavier
collection PubMed
description Chronic hypoxemia, as evidenced in de-acclimatized high-altitude residents or in patients with chronic obstructive respiratory disorders, is a common medical condition that can produce serious neurological alterations. However, the pathogenesis of this phenomenon is unknown. We have found that adult rodents exposed for several days/weeks to hypoxia, with an arterial oxygen tension similar to that of chronically hypoxemic patients, manifest a partially irreversible structural disarrangement of the subventricular neurogenic niche (subventricular zone) characterized by displacement of neurons and myelinated axons, flattening of the ependymal cell layer, and thinning of capillary walls. Despite these abnormalities, the number of neuronal and oligodendrocyte progenitors, neuroblasts, and neurosphere-forming cells as well as the proliferative activity in subventricular zone was unchanged. These results suggest that neural stem cells and their undifferentiated progeny are resistant to hypoxia. However, in vivo and in vitro experiments indicate that severe chronic hypoxia decreases the survival of newly generated neurons and oligodendrocytes, with damage of myelin sheaths. These findings help explain the effects of hypoxia on adult neurogenesis and provide new perspectives on brain responsiveness to persistent hypoxemia.
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spelling pubmed-50450702016-10-21 Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival d’Anglemont de Tassigny, Xavier Sirerol-Piquer, M Salomé Gómez-Pinedo, Ulises Pardal, Ricardo Bonilla, Sonia Capilla-Gonzalez, Vivian López-López, Ivette De la Torre-Laviana, Francisco Javier García-Verdugo, José Manuel López-Barneo, José Hypoxia (Auckl) Original Research Chronic hypoxemia, as evidenced in de-acclimatized high-altitude residents or in patients with chronic obstructive respiratory disorders, is a common medical condition that can produce serious neurological alterations. However, the pathogenesis of this phenomenon is unknown. We have found that adult rodents exposed for several days/weeks to hypoxia, with an arterial oxygen tension similar to that of chronically hypoxemic patients, manifest a partially irreversible structural disarrangement of the subventricular neurogenic niche (subventricular zone) characterized by displacement of neurons and myelinated axons, flattening of the ependymal cell layer, and thinning of capillary walls. Despite these abnormalities, the number of neuronal and oligodendrocyte progenitors, neuroblasts, and neurosphere-forming cells as well as the proliferative activity in subventricular zone was unchanged. These results suggest that neural stem cells and their undifferentiated progeny are resistant to hypoxia. However, in vivo and in vitro experiments indicate that severe chronic hypoxia decreases the survival of newly generated neurons and oligodendrocytes, with damage of myelin sheaths. These findings help explain the effects of hypoxia on adult neurogenesis and provide new perspectives on brain responsiveness to persistent hypoxemia. Dove Medical Press 2015-06-08 /pmc/articles/PMC5045070/ /pubmed/27774479 http://dx.doi.org/10.2147/HP.S78248 Text en © 2015 d’Anglemont de Tassigny et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
d’Anglemont de Tassigny, Xavier
Sirerol-Piquer, M Salomé
Gómez-Pinedo, Ulises
Pardal, Ricardo
Bonilla, Sonia
Capilla-Gonzalez, Vivian
López-López, Ivette
De la Torre-Laviana, Francisco Javier
García-Verdugo, José Manuel
López-Barneo, José
Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival
title Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival
title_full Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival
title_fullStr Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival
title_full_unstemmed Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival
title_short Resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival
title_sort resistance of subventricular neural stem cells to chronic hypoxemia despite structural disorganization of the germinal center and impairment of neuronal and oligodendrocyte survival
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5045070/
https://www.ncbi.nlm.nih.gov/pubmed/27774479
http://dx.doi.org/10.2147/HP.S78248
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