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Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats

Chronic stress produces long‐term metabolic changes throughout the superfamily of nuclear receptors, potentially causing various pathologies. Sex hormones modulate the stress response and generate a sex‐specific age‐dependent metabolic imprint, especially distinct in the reproductive senescence of f...

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Autores principales: Balog, Marta, Blažetić, Senka, Ivić, Vedrana, Labak, Irena, Krajnik, Bartosz, Marin, Raquel, Canerina‐Amaro, Ana, de Pablo, Daniel Pereda, Bardak, Ana, Gaspar, Robert, Szűcs, Kálmán Ferenc, Vari, Sandor G., Heffer, Marija
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9290558/
https://www.ncbi.nlm.nih.gov/pubmed/33909305
http://dx.doi.org/10.1111/ejn.15256
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author Balog, Marta
Blažetić, Senka
Ivić, Vedrana
Labak, Irena
Krajnik, Bartosz
Marin, Raquel
Canerina‐Amaro, Ana
de Pablo, Daniel Pereda
Bardak, Ana
Gaspar, Robert
Szűcs, Kálmán Ferenc
Vari, Sandor G.
Heffer, Marija
author_facet Balog, Marta
Blažetić, Senka
Ivić, Vedrana
Labak, Irena
Krajnik, Bartosz
Marin, Raquel
Canerina‐Amaro, Ana
de Pablo, Daniel Pereda
Bardak, Ana
Gaspar, Robert
Szűcs, Kálmán Ferenc
Vari, Sandor G.
Heffer, Marija
author_sort Balog, Marta
collection PubMed
description Chronic stress produces long‐term metabolic changes throughout the superfamily of nuclear receptors, potentially causing various pathologies. Sex hormones modulate the stress response and generate a sex‐specific age‐dependent metabolic imprint, especially distinct in the reproductive senescence of females. We monitored chronic stress recovery in two age groups of female Sprague Dawley rats to determine whether stress and/or aging structurally changed the glycolipid microenvironment, a milieu playing an important role in cognitive functions. Old females experienced memory impairment even at basal conditions, which was additionally amplified by stress. On the other hand, the memory of young females was not disrupted. Stress recovery was followed by a microglial decrease and an increase in astrocyte count in the hippocampal immune system. Since dysfunction of the brain immune system could contribute to disturbed synaptogenesis, we analyzed neuroplastin expression and the lipid environment. Neuroplastin microenvironments were explored by analyzing immunofluorescent stainings using a newly developed Python script method. Stress reorganized glycolipid microenvironment in the Cornu Ammonis 1 (CA1) and dentate gyrus (DG) hippocampal regions of old females but in a very different fashion, thus affecting neuroplasticity. The postulation of four possible neuroplastin environments pointed to the GD1a ganglioside enrichment during reproductive senescence of stressed females, as well as its high dispersion in both regions and to GD1a and GM1 loss in the CA1 region. A specific lipid environment might influence neuroplastin functionality and underlie synaptic dysfunction triggered by a combination of aging and chronic stress.
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spelling pubmed-92905582022-07-20 Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats Balog, Marta Blažetić, Senka Ivić, Vedrana Labak, Irena Krajnik, Bartosz Marin, Raquel Canerina‐Amaro, Ana de Pablo, Daniel Pereda Bardak, Ana Gaspar, Robert Szűcs, Kálmán Ferenc Vari, Sandor G. Heffer, Marija Eur J Neurosci Special Issue Articles Chronic stress produces long‐term metabolic changes throughout the superfamily of nuclear receptors, potentially causing various pathologies. Sex hormones modulate the stress response and generate a sex‐specific age‐dependent metabolic imprint, especially distinct in the reproductive senescence of females. We monitored chronic stress recovery in two age groups of female Sprague Dawley rats to determine whether stress and/or aging structurally changed the glycolipid microenvironment, a milieu playing an important role in cognitive functions. Old females experienced memory impairment even at basal conditions, which was additionally amplified by stress. On the other hand, the memory of young females was not disrupted. Stress recovery was followed by a microglial decrease and an increase in astrocyte count in the hippocampal immune system. Since dysfunction of the brain immune system could contribute to disturbed synaptogenesis, we analyzed neuroplastin expression and the lipid environment. Neuroplastin microenvironments were explored by analyzing immunofluorescent stainings using a newly developed Python script method. Stress reorganized glycolipid microenvironment in the Cornu Ammonis 1 (CA1) and dentate gyrus (DG) hippocampal regions of old females but in a very different fashion, thus affecting neuroplasticity. The postulation of four possible neuroplastin environments pointed to the GD1a ganglioside enrichment during reproductive senescence of stressed females, as well as its high dispersion in both regions and to GD1a and GM1 loss in the CA1 region. A specific lipid environment might influence neuroplastin functionality and underlie synaptic dysfunction triggered by a combination of aging and chronic stress. John Wiley and Sons Inc. 2021-05-14 2022-05 /pmc/articles/PMC9290558/ /pubmed/33909305 http://dx.doi.org/10.1111/ejn.15256 Text en © 2021 The Authors. European Journal of Neuroscience published by Federation of European Neuroscience Societies and John Wiley & Sons Ltd https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Special Issue Articles
Balog, Marta
Blažetić, Senka
Ivić, Vedrana
Labak, Irena
Krajnik, Bartosz
Marin, Raquel
Canerina‐Amaro, Ana
de Pablo, Daniel Pereda
Bardak, Ana
Gaspar, Robert
Szűcs, Kálmán Ferenc
Vari, Sandor G.
Heffer, Marija
Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats
title Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats
title_full Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats
title_fullStr Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats
title_full_unstemmed Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats
title_short Disarranged neuroplastin environment upon aging and chronic stress recovery in female Sprague Dawley rats
title_sort disarranged neuroplastin environment upon aging and chronic stress recovery in female sprague dawley rats
topic Special Issue Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9290558/
https://www.ncbi.nlm.nih.gov/pubmed/33909305
http://dx.doi.org/10.1111/ejn.15256
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