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Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro

Mechanisms implicated in disease progression in multiple sclerosis include continued oligodendrocyte (OL)/myelin injury and failure of myelin repair. Underlying causes include metabolic stress with resultant energy deficiency. Biotin is a cofactor for carboxylases involved in ATP production that imp...

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Autores principales: Cui, Qiao-Ling, Lin, Yun Hsuan, Xu, Yu Kang T., Fernandes, Milton G. F., Rao, Vijayaraghava T. S., Kennedy, Timothy E., Antel, Jack
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7259710/
https://www.ncbi.nlm.nih.gov/pubmed/32470040
http://dx.doi.org/10.1371/journal.pone.0233859
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author Cui, Qiao-Ling
Lin, Yun Hsuan
Xu, Yu Kang T.
Fernandes, Milton G. F.
Rao, Vijayaraghava T. S.
Kennedy, Timothy E.
Antel, Jack
author_facet Cui, Qiao-Ling
Lin, Yun Hsuan
Xu, Yu Kang T.
Fernandes, Milton G. F.
Rao, Vijayaraghava T. S.
Kennedy, Timothy E.
Antel, Jack
author_sort Cui, Qiao-Ling
collection PubMed
description Mechanisms implicated in disease progression in multiple sclerosis include continued oligodendrocyte (OL)/myelin injury and failure of myelin repair. Underlying causes include metabolic stress with resultant energy deficiency. Biotin is a cofactor for carboxylases involved in ATP production that impact myelin production by promoting fatty acid synthesis. Here, we investigate the effects of high dose Biotin (MD1003) on the functional properties of post-natal rat derived oligodendrocyte progenitor cells (OPCs). A2B5 positive OPCs were assessed using an in vitro injury assay, culturing cells in either DFM (DMEM/F12+N1) or “stress media” (no glucose (NG)-DMEM), with Biotin added over a range from 2.5 to 250 μg/ml, and cell viability determined after 24 hrs. Biotin reduced the increase in OPC cell death in the NG condition. In nanofiber myelination assays, biotin increased the percentage of ensheathing cells, the number of ensheathed segments per cell, and length of ensheathed segments. In dispersed cell culture, Biotin also significantly increased ATP production, assessed using a Seahorse bio-analyzer. For most assays, the positive effects of Biotin were observed at the higher end of the dose-response analysis. We conclude that Biotin, in vitro, protects OL lineage cells from metabolic injury, enhances myelin-like ensheathment, and is associated with increased ATP production.
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spelling pubmed-72597102020-06-08 Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro Cui, Qiao-Ling Lin, Yun Hsuan Xu, Yu Kang T. Fernandes, Milton G. F. Rao, Vijayaraghava T. S. Kennedy, Timothy E. Antel, Jack PLoS One Research Article Mechanisms implicated in disease progression in multiple sclerosis include continued oligodendrocyte (OL)/myelin injury and failure of myelin repair. Underlying causes include metabolic stress with resultant energy deficiency. Biotin is a cofactor for carboxylases involved in ATP production that impact myelin production by promoting fatty acid synthesis. Here, we investigate the effects of high dose Biotin (MD1003) on the functional properties of post-natal rat derived oligodendrocyte progenitor cells (OPCs). A2B5 positive OPCs were assessed using an in vitro injury assay, culturing cells in either DFM (DMEM/F12+N1) or “stress media” (no glucose (NG)-DMEM), with Biotin added over a range from 2.5 to 250 μg/ml, and cell viability determined after 24 hrs. Biotin reduced the increase in OPC cell death in the NG condition. In nanofiber myelination assays, biotin increased the percentage of ensheathing cells, the number of ensheathed segments per cell, and length of ensheathed segments. In dispersed cell culture, Biotin also significantly increased ATP production, assessed using a Seahorse bio-analyzer. For most assays, the positive effects of Biotin were observed at the higher end of the dose-response analysis. We conclude that Biotin, in vitro, protects OL lineage cells from metabolic injury, enhances myelin-like ensheathment, and is associated with increased ATP production. Public Library of Science 2020-05-29 /pmc/articles/PMC7259710/ /pubmed/32470040 http://dx.doi.org/10.1371/journal.pone.0233859 Text en © 2020 Cui et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Cui, Qiao-Ling
Lin, Yun Hsuan
Xu, Yu Kang T.
Fernandes, Milton G. F.
Rao, Vijayaraghava T. S.
Kennedy, Timothy E.
Antel, Jack
Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro
title Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro
title_full Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro
title_fullStr Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro
title_full_unstemmed Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro
title_short Effects of Biotin on survival, ensheathment, and ATP production by oligodendrocyte lineage cells in vitro
title_sort effects of biotin on survival, ensheathment, and atp production by oligodendrocyte lineage cells in vitro
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7259710/
https://www.ncbi.nlm.nih.gov/pubmed/32470040
http://dx.doi.org/10.1371/journal.pone.0233859
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