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Inhibition of Piezo1 attenuates demyelination in the central nervous system

Velasco‐Estevez, María; Gadalla, Kamal K. E.; Liñan‐Barba, Núria; Cobb, Stuart; Dev, Kumlesh K.; Sheridan, Graham K.

Inhibition of Piezo1 attenuates demyelination in the central nervous system Thumbnail


Authors

María Velasco‐Estevez

Kamal K. E. Gadalla

Núria Liñan‐Barba

Stuart Cobb

Kumlesh K. Dev



Abstract

Piezo1 is a mechanosensitive ion channel that facilitates the translation of extracellular mechanical cues to intracellular molecular signaling cascades through a process termed, mechanotransduction. In the central nervous system (CNS), mechanically gated ion channels are important regulators of neurodevelopmental processes such as axon guidance, neural stem cell differentiation, and myelination of axons by oligodendrocytes. Here, we present evidence that pharmacologically mediated overactivation of Piezo1 channels negatively regulates CNS myelination. Moreover, we found that the peptide GsMTx4, an antagonist of mechanosensitive cation channels such as Piezo1, is neuroprotective and prevents chemically induced demyelination. In contrast, the positive modulator of Piezo1 channel opening, Yoda‐1, induces demyelination and neuronal damage. Using an ex vivo murine‐derived organotypic cerebellar slice culture model, we demonstrate that GsMTx4 attenuates demyelination induced by the cytotoxic lipid, psychosine. Importantly, we confirmed the potential therapeutic effects of GsMTx4 peptide in vivo by co‐administering it with lysophosphatidylcholine (LPC), via stereotactic injection, into the cerebral cortex of adult mice. GsMTx4 prevented both demyelination and neuronal damage usually caused by the intracortical injection of LPC in vivo; a well‐characterized model of focal demyelination. GsMTx4 also attenuated both LPC‐induced astrocyte toxicity and microglial reactivity within the lesion core. Overall, our data suggest that pharmacological activation of Piezo1 channels induces demyelination and that inhibition of mechanosensitive channels, using GsMTx4, may alleviate the secondary progressive neurodegeneration often present in the latter stages of demyelinating diseases.

Citation

Velasco‐Estevez, M., Gadalla, K. K. E., Liñan‐Barba, N., Cobb, S., Dev, K. K., & Sheridan, G. K. (2020). Inhibition of Piezo1 attenuates demyelination in the central nervous system. Glia, 68(2), 356-375. https://doi.org/10.1002/glia.23722

Journal Article Type Article
Acceptance Date Sep 6, 2019
Online Publication Date Oct 9, 2019
Publication Date 2020-02
Deposit Date Oct 13, 2019
Publicly Available Date Oct 10, 2020
Journal Glia
Print ISSN 0894-1491
Electronic ISSN 1098-1136
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 68
Issue 2
Pages 356-375
DOI https://doi.org/10.1002/glia.23722
Keywords Cellular and Molecular Neuroscience; Neurology
Public URL https://nottingham-repository.worktribe.com/output/2818827
Publisher URL https://onlinelibrary.wiley.com/doi/10.1002/glia.23722

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