Neurofilament‐tubulin binding site peptide NFL‐TBS.40–63 increases the differentiation of oligodendrocytes in vitro and partially prevents them from lysophosphatidyl choline toxiciy
Author:
Affiliation:
1. LUNAMNeurology DepartmentUniversity HospitalAngers France
2. LUNAMNeurobiology and Transgenesis LaboratoryUPRES EA 3143University HospitalAngers France
Publisher
Wiley
Subject
Cellular and Molecular Neuroscience
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/jnr.23308
Reference64 articles.
1. GSK3β negatively regulates oligodendrocyte differentiation and myelination in vivo
2. Myelin-mediated inhibition of oligodendrocyte precursor differentiation can be overcome by pharmacological modulation of Fyn-RhoA and protein kinase C signalling
3. The vimentin-tubulin binding site peptide (Vim-TBS.58-81) crosses the plasma membrane and enters the nuclei of human glioma cells
4. Role of the oligodendroglial cytoskeleton in differentiation and myelination
5. A Tubulin Binding Peptide Targets Glioma Cells Disrupting Their Microtubules, Blocking Migration, and Inducing Apoptosis
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1. Biological activity of gold nanoparticles combined with the NFL-TBS.40-63 peptide, or with other cell penetrating peptides, on rat glioblastoma cells;International Journal of Pharmaceutics: X;2022-12
2. Myelination of Callosal Axons Is Hampered by Early and Late Forelimb Amputation in Rats;Cerebral Cortex Communications;2020-11-27
3. Lipid Nanoparticles Vectorized with NFL-TBS.40-63 Peptide Target Oligodendrocytes and Promote Neurotrophin-3 Effects After Demyelination In Vitro;Neurochemical Research;2020-09-10
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