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Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration

Failure of central nervous system projection neurons to spontaneously regenerate long-distance axons underlies irreversibility of white matter pathologies. A barrier to axonal regenerative research is that the axons regenerating in response to experimental treatments stall growth before reaching pos...

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Autores principales: Xing, Jian, Lukomska, Agnieszka, Rheaume, Bruce A., Kim, Juhwan, Sajid, Muhammad S., Damania, Ashiti, Trakhtenberg, Ephraim F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10163352/
https://www.ncbi.nlm.nih.gov/pubmed/36971369
http://dx.doi.org/10.1242/dev.201311
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author Xing, Jian
Lukomska, Agnieszka
Rheaume, Bruce A.
Kim, Juhwan
Sajid, Muhammad S.
Damania, Ashiti
Trakhtenberg, Ephraim F.
author_facet Xing, Jian
Lukomska, Agnieszka
Rheaume, Bruce A.
Kim, Juhwan
Sajid, Muhammad S.
Damania, Ashiti
Trakhtenberg, Ephraim F.
author_sort Xing, Jian
collection PubMed
description Failure of central nervous system projection neurons to spontaneously regenerate long-distance axons underlies irreversibility of white matter pathologies. A barrier to axonal regenerative research is that the axons regenerating in response to experimental treatments stall growth before reaching post-synaptic targets. Here, we test the hypothesis that the interaction of regenerating axons with live oligodendrocytes, which were absent during developmental axon growth, contributes to stalling axonal growth. To test this hypothesis, first, we used single cell RNA-seq (scRNA-seq) and immunohistology to investigate whether post-injury born oligodendrocytes incorporate into the glial scar after optic nerve injury. Then, we administered demyelination-inducing cuprizone and stimulated axon regeneration by Pten knockdown (KD) after optic nerve crush. We found that post-injury born oligodendrocyte lineage cells incorporate into the glial scar, where they are susceptible to the demyelination diet, which reduced their presence in the glial scar. We further found that the demyelination diet enhanced Pten KD-stimulated axon regeneration and that localized cuprizone injection promoted axon regeneration. We also present a resource for comparing the gene expression of scRNA-seq-profiled normal and injured optic nerve oligodendrocyte lineage cells.
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spelling pubmed-101633522023-05-07 Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration Xing, Jian Lukomska, Agnieszka Rheaume, Bruce A. Kim, Juhwan Sajid, Muhammad S. Damania, Ashiti Trakhtenberg, Ephraim F. Development Stem Cells and Regeneration Failure of central nervous system projection neurons to spontaneously regenerate long-distance axons underlies irreversibility of white matter pathologies. A barrier to axonal regenerative research is that the axons regenerating in response to experimental treatments stall growth before reaching post-synaptic targets. Here, we test the hypothesis that the interaction of regenerating axons with live oligodendrocytes, which were absent during developmental axon growth, contributes to stalling axonal growth. To test this hypothesis, first, we used single cell RNA-seq (scRNA-seq) and immunohistology to investigate whether post-injury born oligodendrocytes incorporate into the glial scar after optic nerve injury. Then, we administered demyelination-inducing cuprizone and stimulated axon regeneration by Pten knockdown (KD) after optic nerve crush. We found that post-injury born oligodendrocyte lineage cells incorporate into the glial scar, where they are susceptible to the demyelination diet, which reduced their presence in the glial scar. We further found that the demyelination diet enhanced Pten KD-stimulated axon regeneration and that localized cuprizone injection promoted axon regeneration. We also present a resource for comparing the gene expression of scRNA-seq-profiled normal and injured optic nerve oligodendrocyte lineage cells. The Company of Biologists Ltd 2023-04-27 /pmc/articles/PMC10163352/ /pubmed/36971369 http://dx.doi.org/10.1242/dev.201311 Text en © 2023. Published by The Company of Biologists Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Stem Cells and Regeneration
Xing, Jian
Lukomska, Agnieszka
Rheaume, Bruce A.
Kim, Juhwan
Sajid, Muhammad S.
Damania, Ashiti
Trakhtenberg, Ephraim F.
Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration
title Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration
title_full Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration
title_fullStr Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration
title_full_unstemmed Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration
title_short Post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration
title_sort post-injury born oligodendrocytes incorporate into the glial scar and contribute to the inhibition of axon regeneration
topic Stem Cells and Regeneration
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10163352/
https://www.ncbi.nlm.nih.gov/pubmed/36971369
http://dx.doi.org/10.1242/dev.201311
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