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Publication : Oligodendrocyte death initiates synchronous remyelination to restore cortical myelin patterns in mice.

First Author  Chapman TW Year  2023
Journal  Nat Neurosci Volume  26
Issue  4 Pages  555-569
PubMed ID  36928635 Mgi Jnum  J:349184
Mgi Id  MGI:7486664 Doi  10.1038/s41593-023-01271-1
Citation  Chapman TW, et al. (2023) Oligodendrocyte death initiates synchronous remyelination to restore cortical myelin patterns in mice. Nat Neurosci 26(4):555-569
abstractText  Myelin degeneration occurs in neurodegenerative diseases and aging. In these conditions, resident oligodendrocyte progenitor cells (OPCs) differentiate into oligodendrocytes that carry out myelin repair. To investigate the cellular dynamics underlying these events, we developed a noninflammatory demyelination model that combines intravital two-photon imaging with a single-cell ablation technique called two-photon apoptotic targeted ablation (2Phatal). Oligodendrocyte 2Phatal in both sexes results in a myelin degeneration cascade that triggers rapid forms of synchronous remyelination on defined axons. This remyelination is driven by oligodendrocytes differentiated from a subset of morphologically distinct, highly branched OPCs. Moreover, remyelination efficiency depends on the initial myelin patterns, as well as the age of the organism. In summary, using 2Phatal, we show a form of rapid synchronous remyelination, mediated by a distinct subset of OPCs, capable of restoring the original myelin patterning in adulthood but not aging.
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