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Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety

Adult neurogenesis is a tightly regulated process continuously taking place in the central nervous system of most mammalian species. In neuroscience research, transgenic animals bearing the tamoxifen-inducible CreER(T2)-Lox system are widely used. In this study, we made use of a Nestin-CreER(T2)/R26...

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Autores principales: Rotheneichner, Peter, Romanelli, Pasquale, Bieler, Lara, Pagitsch, Sebastian, Zaunmair, Pia, Kreutzer, Christina, König, Richard, Marschallinger, Julia, Aigner, Ludwig, Couillard-Després, Sébastien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5285339/
https://www.ncbi.nlm.nih.gov/pubmed/28203140
http://dx.doi.org/10.3389/fnins.2017.00027
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author Rotheneichner, Peter
Romanelli, Pasquale
Bieler, Lara
Pagitsch, Sebastian
Zaunmair, Pia
Kreutzer, Christina
König, Richard
Marschallinger, Julia
Aigner, Ludwig
Couillard-Després, Sébastien
author_facet Rotheneichner, Peter
Romanelli, Pasquale
Bieler, Lara
Pagitsch, Sebastian
Zaunmair, Pia
Kreutzer, Christina
König, Richard
Marschallinger, Julia
Aigner, Ludwig
Couillard-Després, Sébastien
author_sort Rotheneichner, Peter
collection PubMed
description Adult neurogenesis is a tightly regulated process continuously taking place in the central nervous system of most mammalian species. In neuroscience research, transgenic animals bearing the tamoxifen-inducible CreER(T2)-Lox system are widely used. In this study, we made use of a Nestin-CreER(T2)/R26R-YFP transgenic mouse model in which the CreER(T2) activates the expression of YFP in multipotent neural stem cells upon tamoxifen application. Humoral factors, such as the levels of estrogens, have been reported to affect the hippocampal neurogenesis. The application of tamoxifen, a mixed agonist/antagonist of the estrogen receptor that permeates the blood-brain-barrier, could thus influence adult neurogenesis. Although the functions of adult neurogenesis are yet to be fully deciphered, a reciprocal interaction between rates of neurogenesis on the one hand and learning and mood regulation on the other hand, has been suggested. The impact of tamoxifen on neurogenesis and behavior was therefore addressed following five daily applications according to the open field test, the elevated plus maze, and Morris water maze. In addition, the impact of short-term tamoxifen application on progenitor cell proliferation, morphology, and fate in the neurogenic niche of the dentate gyrus were investigated. Finally, the influence of the route of administration (oral vs. intra-peritoneal) and gender-specific response were scrutinized. The sub-acute analysis did neither reveal significant differences in behavior, such as voluntary motor activity, anxiety behavior, and spatial learning, nor in cell proliferation, cell survival, dendritic arborization or maturation rate within the dentate gyrus between saline solution-, corn oil-, and tamoxifen-treated groups. Finally, neither the route of application, nor the gender of treated mice influenced the response to tamoxifen. We conclude that short tamoxifen treatments used to activate the CreER(T2) system in transgenic mouse models does not have a measurable impact on adult neurogenesis or the here tested behavior, and is therefore appropriate for most studies in the field.
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spelling pubmed-52853392017-02-15 Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety Rotheneichner, Peter Romanelli, Pasquale Bieler, Lara Pagitsch, Sebastian Zaunmair, Pia Kreutzer, Christina König, Richard Marschallinger, Julia Aigner, Ludwig Couillard-Després, Sébastien Front Neurosci Neuroscience Adult neurogenesis is a tightly regulated process continuously taking place in the central nervous system of most mammalian species. In neuroscience research, transgenic animals bearing the tamoxifen-inducible CreER(T2)-Lox system are widely used. In this study, we made use of a Nestin-CreER(T2)/R26R-YFP transgenic mouse model in which the CreER(T2) activates the expression of YFP in multipotent neural stem cells upon tamoxifen application. Humoral factors, such as the levels of estrogens, have been reported to affect the hippocampal neurogenesis. The application of tamoxifen, a mixed agonist/antagonist of the estrogen receptor that permeates the blood-brain-barrier, could thus influence adult neurogenesis. Although the functions of adult neurogenesis are yet to be fully deciphered, a reciprocal interaction between rates of neurogenesis on the one hand and learning and mood regulation on the other hand, has been suggested. The impact of tamoxifen on neurogenesis and behavior was therefore addressed following five daily applications according to the open field test, the elevated plus maze, and Morris water maze. In addition, the impact of short-term tamoxifen application on progenitor cell proliferation, morphology, and fate in the neurogenic niche of the dentate gyrus were investigated. Finally, the influence of the route of administration (oral vs. intra-peritoneal) and gender-specific response were scrutinized. The sub-acute analysis did neither reveal significant differences in behavior, such as voluntary motor activity, anxiety behavior, and spatial learning, nor in cell proliferation, cell survival, dendritic arborization or maturation rate within the dentate gyrus between saline solution-, corn oil-, and tamoxifen-treated groups. Finally, neither the route of application, nor the gender of treated mice influenced the response to tamoxifen. We conclude that short tamoxifen treatments used to activate the CreER(T2) system in transgenic mouse models does not have a measurable impact on adult neurogenesis or the here tested behavior, and is therefore appropriate for most studies in the field. Frontiers Media S.A. 2017-02-01 /pmc/articles/PMC5285339/ /pubmed/28203140 http://dx.doi.org/10.3389/fnins.2017.00027 Text en Copyright © 2017 Rotheneichner, Romanelli, Bieler, Pagitsch, Zaunmair, Kreutzer, König, Marschallinger, Aigner and Couillard-Després. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Rotheneichner, Peter
Romanelli, Pasquale
Bieler, Lara
Pagitsch, Sebastian
Zaunmair, Pia
Kreutzer, Christina
König, Richard
Marschallinger, Julia
Aigner, Ludwig
Couillard-Després, Sébastien
Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety
title Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety
title_full Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety
title_fullStr Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety
title_full_unstemmed Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety
title_short Tamoxifen Activation of Cre-Recombinase Has No Persisting Effects on Adult Neurogenesis or Learning and Anxiety
title_sort tamoxifen activation of cre-recombinase has no persisting effects on adult neurogenesis or learning and anxiety
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5285339/
https://www.ncbi.nlm.nih.gov/pubmed/28203140
http://dx.doi.org/10.3389/fnins.2017.00027
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