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Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve

Adolescence is a critical period of postnatal development characterized by social, emotional, and cognitive changes. These changes are increasingly understood to depend on white matter development. White matter is highly vulnerable to the effects of injury, including secondary degeneration in region...

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Autores principales: Lins, Brittney R., Anyaegbu, Chidozie C., McGonigle, Terence, Hellewell, Sarah C., Patel, Parth, Reagan, Harry, Rooke-Wiesner, Cara, Warnock, Andrew, Archer, Michael, Hemmi, Jan M., Bartlett, Carole, Fitzgerald, Melinda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966883/
https://www.ncbi.nlm.nih.gov/pubmed/36834755
http://dx.doi.org/10.3390/ijms24043343
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author Lins, Brittney R.
Anyaegbu, Chidozie C.
McGonigle, Terence
Hellewell, Sarah C.
Patel, Parth
Reagan, Harry
Rooke-Wiesner, Cara
Warnock, Andrew
Archer, Michael
Hemmi, Jan M.
Bartlett, Carole
Fitzgerald, Melinda
author_facet Lins, Brittney R.
Anyaegbu, Chidozie C.
McGonigle, Terence
Hellewell, Sarah C.
Patel, Parth
Reagan, Harry
Rooke-Wiesner, Cara
Warnock, Andrew
Archer, Michael
Hemmi, Jan M.
Bartlett, Carole
Fitzgerald, Melinda
author_sort Lins, Brittney R.
collection PubMed
description Adolescence is a critical period of postnatal development characterized by social, emotional, and cognitive changes. These changes are increasingly understood to depend on white matter development. White matter is highly vulnerable to the effects of injury, including secondary degeneration in regions adjacent to the primary injury site which alters the myelin ultrastructure. However, the impact of such alterations on adolescent white matter maturation is yet to be investigated. To address this, female piebald-virol-glaxo rats underwent partial transection of the optic nerve during early adolescence (postnatal day (PND) 56) with tissue collection two weeks (PND 70) or three months later (PND 140). Axons and myelin in the transmission electron micrographs of tissue adjacent to the injury were classified and measured based on the appearance of the myelin laminae. Injury in adolescence impaired the myelin structure in adulthood, resulting in a lower percentage of axons with compact myelin and a higher percentage of axons with severe myelin decompaction. Myelin thickness did not increase as expected into adulthood after injury and the relationship between the axon diameter and myelin thickness in adulthood was altered. Notably, dysmyelination was not observed 2 weeks postinjury. In conclusion, injury in adolescence altered the developmental trajectory, resulting in impaired myelin maturation when assessed at the ultrastructural level in adulthood.
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spelling pubmed-99668832023-02-26 Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve Lins, Brittney R. Anyaegbu, Chidozie C. McGonigle, Terence Hellewell, Sarah C. Patel, Parth Reagan, Harry Rooke-Wiesner, Cara Warnock, Andrew Archer, Michael Hemmi, Jan M. Bartlett, Carole Fitzgerald, Melinda Int J Mol Sci Article Adolescence is a critical period of postnatal development characterized by social, emotional, and cognitive changes. These changes are increasingly understood to depend on white matter development. White matter is highly vulnerable to the effects of injury, including secondary degeneration in regions adjacent to the primary injury site which alters the myelin ultrastructure. However, the impact of such alterations on adolescent white matter maturation is yet to be investigated. To address this, female piebald-virol-glaxo rats underwent partial transection of the optic nerve during early adolescence (postnatal day (PND) 56) with tissue collection two weeks (PND 70) or three months later (PND 140). Axons and myelin in the transmission electron micrographs of tissue adjacent to the injury were classified and measured based on the appearance of the myelin laminae. Injury in adolescence impaired the myelin structure in adulthood, resulting in a lower percentage of axons with compact myelin and a higher percentage of axons with severe myelin decompaction. Myelin thickness did not increase as expected into adulthood after injury and the relationship between the axon diameter and myelin thickness in adulthood was altered. Notably, dysmyelination was not observed 2 weeks postinjury. In conclusion, injury in adolescence altered the developmental trajectory, resulting in impaired myelin maturation when assessed at the ultrastructural level in adulthood. MDPI 2023-02-07 /pmc/articles/PMC9966883/ /pubmed/36834755 http://dx.doi.org/10.3390/ijms24043343 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lins, Brittney R.
Anyaegbu, Chidozie C.
McGonigle, Terence
Hellewell, Sarah C.
Patel, Parth
Reagan, Harry
Rooke-Wiesner, Cara
Warnock, Andrew
Archer, Michael
Hemmi, Jan M.
Bartlett, Carole
Fitzgerald, Melinda
Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve
title Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve
title_full Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve
title_fullStr Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve
title_full_unstemmed Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve
title_short Secondary Degeneration Impairs Myelin Ultrastructural Development in Adulthood following Adolescent Neurotrauma in the Rat Optic Nerve
title_sort secondary degeneration impairs myelin ultrastructural development in adulthood following adolescent neurotrauma in the rat optic nerve
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966883/
https://www.ncbi.nlm.nih.gov/pubmed/36834755
http://dx.doi.org/10.3390/ijms24043343
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