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Methocarbamol blocks muscular Na v 1.4 channels and decreases isometric force of mouse muscles.

Authors :
Zhang Y
Otto P
Qin L
Eiber N
Hashemolhosseini S
Kröger S
Brinkmeier H
Source :
Muscle & nerve [Muscle Nerve] 2021 Jan; Vol. 63 (1), pp. 141-150. Date of Electronic Publication: 2020 Oct 27.
Publication Year :
2021

Abstract

Background: The muscle relaxant methocarbamol is widely used for the treatment of muscle spasms and pain syndromes. To elucidate molecular mechanisms of its action, we studied its influence on neuromuscular transmission, on isometric muscle force, and on voltage-gated Na <superscript>+</superscript> channels.<br />Methods: Neuromuscular transmission was investigated in murine diaphragm-phrenic nerve preparations and muscle force studied on mouse soleus muscles. Na <subscript>v</subscript> 1.4 channels and Na <subscript>v</subscript> 1.7 channels were functionally expressed in eukaryotic cell lines.<br />Results: Methocarbamol, at 2 mM, decreased the decay of endplate currents, slowed the decay of endplate potentials and reduced tetanic force of soleus muscles. The drug reversibly inhibited current flow through muscular Na <subscript>v</subscript> 1.4 channels, while neuronal Na <subscript>v</subscript> 1.7 channels were unaffected.<br />Conclusions: The study provides evidence for peripheral actions of methocarbamol on skeletal muscle. Muscular Na <superscript>+</superscript> channels are a molecular target of methocarbamol. Since Na <subscript>v</subscript> 1.7 currents were unaffected, methocarbamol is unlikely to exert its analgesic effect by directly blocking Na <subscript>v</subscript> 1.7 channels.<br /> (© 2020 The Authors. Muscle & Nerve published by Wiley Periodicals LLC.)

Details

Language :
English
ISSN :
1097-4598
Volume :
63
Issue :
1
Database :
MEDLINE
Journal :
Muscle & nerve
Publication Type :
Academic Journal
Accession number :
33043468
Full Text :
https://doi.org/10.1002/mus.27087