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Cause and prevention of demyelination in a model multiple sclerosis lesion

OBJECTIVE: Demyelination is a cardinal feature of multiple sclerosis, but it remains unclear why new lesions form, and whether they can be prevented. Neuropathological evidence suggests that demyelination can occur in the relative absence of lymphocytes, and with distinctive characteristics suggesti...

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Autores principales: Desai, Roshni A., Davies, Andrew L., Tachrount, Mohamed, Kasti, Marianne, Laulund, Frida, Golay, Xavier, Smith, Kenneth J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4949637/
https://www.ncbi.nlm.nih.gov/pubmed/26814844
http://dx.doi.org/10.1002/ana.24607
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author Desai, Roshni A.
Davies, Andrew L.
Tachrount, Mohamed
Kasti, Marianne
Laulund, Frida
Golay, Xavier
Smith, Kenneth J.
author_facet Desai, Roshni A.
Davies, Andrew L.
Tachrount, Mohamed
Kasti, Marianne
Laulund, Frida
Golay, Xavier
Smith, Kenneth J.
author_sort Desai, Roshni A.
collection PubMed
description OBJECTIVE: Demyelination is a cardinal feature of multiple sclerosis, but it remains unclear why new lesions form, and whether they can be prevented. Neuropathological evidence suggests that demyelination can occur in the relative absence of lymphocytes, and with distinctive characteristics suggestive of a tissue energy deficit. The objective was to examine an experimental model of the early multiple sclerosis lesion and identify pathogenic mechanisms and opportunities for therapy. METHODS: Demyelinating lesions were induced in the rat spinal dorsal column by microinjection of lipopolysaccharide, and examined immunohistochemically at different stages of development. The efficacy of treatment with inspired oxygen for 2 days following lesion induction was evaluated. RESULTS: Demyelinating lesions were not centered on the injection site, but rather formed 1 week later at the white–gray matter border, preferentially including the ventral dorsal column watershed. Lesion formation was preceded by a transient early period of hypoxia and increased production of superoxide and nitric oxide. Oligodendrocyte numbers decreased at the site shortly afterward, prior to demyelination. Lesions formed at a site of inherent susceptibility to hypoxia, as revealed by exposure of naive animals to a hypoxic environment. Notably, raising the inspired oxygen (80%, normobaric) during the hypoxic period significantly reduced or prevented the demyelination. INTERPRETATION: Demyelination characteristic of at least some early multiple sclerosis lesions can arise at a vascular watershed following activation of innate immune mechanisms that provoke hypoxia, and superoxide and nitric oxide formation, all of which can compromise cellular energy sufficiency. Demyelination can be reduced or eliminated by increasing inspired oxygen to alleviate the transient hypoxia. Ann Neurol 2016;79:591–604
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spelling pubmed-49496372016-07-28 Cause and prevention of demyelination in a model multiple sclerosis lesion Desai, Roshni A. Davies, Andrew L. Tachrount, Mohamed Kasti, Marianne Laulund, Frida Golay, Xavier Smith, Kenneth J. Ann Neurol Research Articles OBJECTIVE: Demyelination is a cardinal feature of multiple sclerosis, but it remains unclear why new lesions form, and whether they can be prevented. Neuropathological evidence suggests that demyelination can occur in the relative absence of lymphocytes, and with distinctive characteristics suggestive of a tissue energy deficit. The objective was to examine an experimental model of the early multiple sclerosis lesion and identify pathogenic mechanisms and opportunities for therapy. METHODS: Demyelinating lesions were induced in the rat spinal dorsal column by microinjection of lipopolysaccharide, and examined immunohistochemically at different stages of development. The efficacy of treatment with inspired oxygen for 2 days following lesion induction was evaluated. RESULTS: Demyelinating lesions were not centered on the injection site, but rather formed 1 week later at the white–gray matter border, preferentially including the ventral dorsal column watershed. Lesion formation was preceded by a transient early period of hypoxia and increased production of superoxide and nitric oxide. Oligodendrocyte numbers decreased at the site shortly afterward, prior to demyelination. Lesions formed at a site of inherent susceptibility to hypoxia, as revealed by exposure of naive animals to a hypoxic environment. Notably, raising the inspired oxygen (80%, normobaric) during the hypoxic period significantly reduced or prevented the demyelination. INTERPRETATION: Demyelination characteristic of at least some early multiple sclerosis lesions can arise at a vascular watershed following activation of innate immune mechanisms that provoke hypoxia, and superoxide and nitric oxide formation, all of which can compromise cellular energy sufficiency. Demyelination can be reduced or eliminated by increasing inspired oxygen to alleviate the transient hypoxia. Ann Neurol 2016;79:591–604 John Wiley and Sons Inc. 2016-02-22 2016-04 /pmc/articles/PMC4949637/ /pubmed/26814844 http://dx.doi.org/10.1002/ana.24607 Text en © 2016 The Authors. Annals of Neurology published by Wiley Periodicals, Inc. on behalf of American Neurological Association. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Desai, Roshni A.
Davies, Andrew L.
Tachrount, Mohamed
Kasti, Marianne
Laulund, Frida
Golay, Xavier
Smith, Kenneth J.
Cause and prevention of demyelination in a model multiple sclerosis lesion
title Cause and prevention of demyelination in a model multiple sclerosis lesion
title_full Cause and prevention of demyelination in a model multiple sclerosis lesion
title_fullStr Cause and prevention of demyelination in a model multiple sclerosis lesion
title_full_unstemmed Cause and prevention of demyelination in a model multiple sclerosis lesion
title_short Cause and prevention of demyelination in a model multiple sclerosis lesion
title_sort cause and prevention of demyelination in a model multiple sclerosis lesion
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4949637/
https://www.ncbi.nlm.nih.gov/pubmed/26814844
http://dx.doi.org/10.1002/ana.24607
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