ArticleCardiovascular diabetology. Endocrinology reports2025
Statins, skeletal muscle, and ryanodine receptor activation: resolving a 30-year mystery behind statin myotoxicity.
Article in Cardiovascular diabetology. Endocrinology reports, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Statins are foundational therapies in cardiometabolic disease prevention, yet their clinical utility is could be limited by muscle-related adverse effects whose molecular origins have remained incompletely understood. In a landmark structural study, atorvastatin is shown to bind directly to skeletal muscle RyR1 in a unique triplet configuration, sequentially destabilizing the closed channel and promoting pathological Ca²⁺ leak. This work provides the first atomic-level explanation for statin-induced myopathy and reveals why individuals with RyR1 gain-of-function variants—already known to be overrepresented among statin-intolerant patients—are particularly vulnerable to muscle toxicity. For endocrinology, these findings are especially significant: statins remain central interventions in dyslipidemia, diabetes, obesity, and metabolic syndrome, and intolerance disproportionately affects individuals with high cardiometabolic burden. By establishing a receptor-mediated mechanism of statin myotoxicity, this study opens the door to genotype-informed statin prescribing, rational engineering of “RyR1-silent” lipid-lowering agents, and improved long-term adherence in patients with endocrine and metabolic disorders. These findings represent a major advance at the interface of metabolism, muscle physiology, and precision pharmacology, with the potential to reshape clinical practice across the endocrine continuum.
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