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Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus

Recombinant human erythropoietin (EPO) improves cognitive performance in neuropsychiatric diseases ranging from schizophrenia and multiple sclerosis to major depression and bipolar disease. This consistent EPO effect on cognition is independent of its role in hematopoiesis. The cellular mechanisms o...

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Autores principales: Hassouna, I, Ott, C, Wüstefeld, L, Offen, N, Neher, R A, Mitkovski, M, Winkler, D, Sperling, S, Fries, L, Goebbels, S, Vreja, I C, Hagemeyer, N, Dittrich, M, Rossetti, M F, Kröhnert, K, Hannke, K, Boretius, S, Zeug, A, Höschen, C, Dandekar, T, Dere, E, Neher, E, Rizzoli, S O, Nave, K-A, Sirén, A-L, Ehrenreich, H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5193535/
https://www.ncbi.nlm.nih.gov/pubmed/26809838
http://dx.doi.org/10.1038/mp.2015.212
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author Hassouna, I
Ott, C
Wüstefeld, L
Offen, N
Neher, R A
Mitkovski, M
Winkler, D
Sperling, S
Fries, L
Goebbels, S
Vreja, I C
Hagemeyer, N
Dittrich, M
Rossetti, M F
Kröhnert, K
Hannke, K
Boretius, S
Zeug, A
Höschen, C
Dandekar, T
Dere, E
Neher, E
Rizzoli, S O
Nave, K-A
Sirén, A-L
Ehrenreich, H
author_facet Hassouna, I
Ott, C
Wüstefeld, L
Offen, N
Neher, R A
Mitkovski, M
Winkler, D
Sperling, S
Fries, L
Goebbels, S
Vreja, I C
Hagemeyer, N
Dittrich, M
Rossetti, M F
Kröhnert, K
Hannke, K
Boretius, S
Zeug, A
Höschen, C
Dandekar, T
Dere, E
Neher, E
Rizzoli, S O
Nave, K-A
Sirén, A-L
Ehrenreich, H
author_sort Hassouna, I
collection PubMed
description Recombinant human erythropoietin (EPO) improves cognitive performance in neuropsychiatric diseases ranging from schizophrenia and multiple sclerosis to major depression and bipolar disease. This consistent EPO effect on cognition is independent of its role in hematopoiesis. The cellular mechanisms of action in brain, however, have remained unclear. Here we studied healthy young mice and observed that 3-week EPO administration was associated with an increased number of pyramidal neurons and oligodendrocytes in the hippocampus of ~20%. Under constant cognitive challenge, neuron numbers remained elevated until >6 months of age. Surprisingly, this increase occurred in absence of altered cell proliferation or apoptosis. After feeding a (15)N-leucine diet, we used nanoscopic secondary ion mass spectrometry, and found that in EPO-treated mice, an equivalent number of neurons was defined by elevated (15)N-leucine incorporation. In EPO-treated NG2-Cre-ERT2 mice, we confirmed enhanced differentiation of preexisting oligodendrocyte precursors in the absence of elevated DNA synthesis. A corresponding analysis of the neuronal lineage awaits the identification of suitable neuronal markers. In cultured neurospheres, EPO reduced Sox9 and stimulated miR124, associated with advanced neuronal differentiation. We are discussing a resulting working model in which EPO drives the differentiation of non-dividing precursors in both (NG2+) oligodendroglial and neuronal lineages. As endogenous EPO expression is induced by brain injury, such a mechanism of adult neurogenesis may be relevant for central nervous system regeneration.
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spelling pubmed-51935352017-01-17 Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus Hassouna, I Ott, C Wüstefeld, L Offen, N Neher, R A Mitkovski, M Winkler, D Sperling, S Fries, L Goebbels, S Vreja, I C Hagemeyer, N Dittrich, M Rossetti, M F Kröhnert, K Hannke, K Boretius, S Zeug, A Höschen, C Dandekar, T Dere, E Neher, E Rizzoli, S O Nave, K-A Sirén, A-L Ehrenreich, H Mol Psychiatry Original Article Recombinant human erythropoietin (EPO) improves cognitive performance in neuropsychiatric diseases ranging from schizophrenia and multiple sclerosis to major depression and bipolar disease. This consistent EPO effect on cognition is independent of its role in hematopoiesis. The cellular mechanisms of action in brain, however, have remained unclear. Here we studied healthy young mice and observed that 3-week EPO administration was associated with an increased number of pyramidal neurons and oligodendrocytes in the hippocampus of ~20%. Under constant cognitive challenge, neuron numbers remained elevated until >6 months of age. Surprisingly, this increase occurred in absence of altered cell proliferation or apoptosis. After feeding a (15)N-leucine diet, we used nanoscopic secondary ion mass spectrometry, and found that in EPO-treated mice, an equivalent number of neurons was defined by elevated (15)N-leucine incorporation. In EPO-treated NG2-Cre-ERT2 mice, we confirmed enhanced differentiation of preexisting oligodendrocyte precursors in the absence of elevated DNA synthesis. A corresponding analysis of the neuronal lineage awaits the identification of suitable neuronal markers. In cultured neurospheres, EPO reduced Sox9 and stimulated miR124, associated with advanced neuronal differentiation. We are discussing a resulting working model in which EPO drives the differentiation of non-dividing precursors in both (NG2+) oligodendroglial and neuronal lineages. As endogenous EPO expression is induced by brain injury, such a mechanism of adult neurogenesis may be relevant for central nervous system regeneration. Nature Publishing Group 2016-12 2016-01-26 /pmc/articles/PMC5193535/ /pubmed/26809838 http://dx.doi.org/10.1038/mp.2015.212 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
Hassouna, I
Ott, C
Wüstefeld, L
Offen, N
Neher, R A
Mitkovski, M
Winkler, D
Sperling, S
Fries, L
Goebbels, S
Vreja, I C
Hagemeyer, N
Dittrich, M
Rossetti, M F
Kröhnert, K
Hannke, K
Boretius, S
Zeug, A
Höschen, C
Dandekar, T
Dere, E
Neher, E
Rizzoli, S O
Nave, K-A
Sirén, A-L
Ehrenreich, H
Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus
title Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus
title_full Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus
title_fullStr Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus
title_full_unstemmed Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus
title_short Revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus
title_sort revisiting adult neurogenesis and the role of erythropoietin for neuronal and oligodendroglial differentiation in the hippocampus
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5193535/
https://www.ncbi.nlm.nih.gov/pubmed/26809838
http://dx.doi.org/10.1038/mp.2015.212
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