Vamorolone improves Becker muscular dystrophy and increases dystrophin protein in bmx model mice

There is no approved therapy for Becker muscular dystrophy (BMD), a genetic muscle disease caused by in-frame dystrophin deletions. We previously developed the dissociative corticosteroid vamorolone for treatment of the allelic, dystrophin-null disease Duchenne muscular dystrophy. We hypothesize vam...

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Veröffentlicht in:iScience 2023-07, Vol.26 (7), p.107161-107161, Article 107161
Hauptverfasser: McCormack, Nikki M., Nguyen, Nhu Y., Tully, Christopher B., Oliver, Trinitee, Fiorillo, Alyson A., Heier, Christopher R.
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Sprache:eng
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Zusammenfassung:There is no approved therapy for Becker muscular dystrophy (BMD), a genetic muscle disease caused by in-frame dystrophin deletions. We previously developed the dissociative corticosteroid vamorolone for treatment of the allelic, dystrophin-null disease Duchenne muscular dystrophy. We hypothesize vamorolone can treat BMD by safely reducing inflammatory signaling in muscle and through a novel mechanism of increasing dystrophin protein via suppression of dystrophin-targeting miRNAs. Here, we test this in the bmx mouse model of BMD. Daily oral treatment with vamorolone or prednisolone improves bmx grip strength and hang time phenotypes. Both drugs reduce myofiber size and decrease the percentage of centrally nucleated fibers. Vamorolone shows improved safety versus prednisolone by avoiding or reducing key side effects to behavior and growth. Intriguingly, vamorolone increases dystrophin protein in both heart and skeletal muscle. These data indicate that vamorolone, nearing approval for Duchenne, shows efficacy in bmx mice and therefore warrants clinical investigation in BMD. [Display omitted] •Vamorolone and prednisone improve muscle strength and pathology in BMD model mice•Vamorolone shows an improved safety profile versus prednisone•Anti-inflammatory steroidal drugs increase dystrophin protein in muscle and heart•Dystrophin protein levels inversely correlate with dystrophin-targeting miRNAs Pharmacology; Biological sciences; Neuroscience
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2023.107161