KCNQ openers retigabine and flupirtine prevented 9-AC-induced myotonia in murine skeletal muscle by inhibiting increased twitch amplitude, reducing tetanic fade, and decreasing firing frequencies.
Do KCNQ openers (retigabine and flupirtine) prevent myotonia induced by 9-AC in murine skeletal muscle?
KCNQ openers retigabine and flupirtine effectively prevent 9-AC-induced myotonia in murine skeletal muscle, suggesting their potential as alternative therapeutic agents for myotonia.
The purpose of this study was to investigate the effect of KCNQ (potassium channel, voltage-gated, KQT-like subfamily) openers in preventing myotonia caused by anthracene-9-carboxylic acid (9-AC, a chloride channel blocker). An animal model of myotonia can be elicited in murine skeletal muscle by 9-AC treatment. KCNQ openers, such as retigabine and flupirtine, can inhibit the increased twitch amplitude (0.1 Hz stimulation) and reduce the tetanic fade (20 Hz stimulations) observed in the presence of 9-AC. Furthermore, the prolonged twitch duration of skeletal muscle was also inhibited by retigabine or flupirtine. Lamotrigine (an anticonvulsant drug) has a lesser effect on the muscle twitch amplitude, tetanic fade, and prolonged twitch duration as compared with KCNQ openers. In experiments using intracellular recordings, retigabine and flupirtine clearly reduced the firing frequencies of repetitive action potentials induced by 9-AC. These data suggested that KCNQ openers prevent the myotonia induced by 9-AC, at least partly through enhancing potassium conductance in skeletal muscle. Taken together, these results indicate that KCNQ openers are potential alternative therapeutic agents for the treatment of myotonia.
Su et al. (Sun,) conducted a other in Myotonia. KCNQ openers (retigabine and flupirtine) vs. Lamotrigine was evaluated on Myotonia symptoms (twitch amplitude, tetanic fade, prolonged twitch duration, firing frequencies). KCNQ openers retigabine and flupirtine prevented 9-AC-induced myotonia in murine skeletal muscle by inhibiting increased twitch amplitude, reducing tetanic fade, and decreasing firing frequencies.
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