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Administration of soluble activin receptor 2B increases bone and muscle mass in a mouse model of osteogenesis imperfecta

机译:在成骨不全症小鼠模型中施用可溶性激活素受体2B可增加骨骼和肌肉质量

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摘要

Osteogenesis imperfecta (OI) comprises a group of heritable connective tissue disorders generally defined by recurrent fractures, low bone mass, short stature and skeletal fragility. Beyond the skeletal complications of OI, many patients also report intolerance to physical activity, fatigue and muscle weakness. Indeed, recent studies have demonstrated that skeletal muscle is also negatively affected by OI, both directly and indirectly. Given the well-established interdependence of bone and skeletal muscle in both physiology and pathophysiology and the observations of skeletal muscle pathology in patients with OI, we investigated the therapeutic potential of simultaneous anabolic targeting of both bone and skeletal muscle using a soluble activin receptor 2B (ACVR2B) in a mouse model of type III OI (oim). Treatment of 12-week-old oim mice with ACVR2B for 4 weeks resulted in significant increases in both bone and muscle that were similar to those observed in healthy, wild-type littermates. This proof of concept study provides encouraging evidence for a holistic approach to treating the deleterious consequences of OI in the musculoskeletal system.
机译:成骨不全症(OI)包括一组可遗传的结缔组织疾病,通常由复发性骨折,骨量低,身材矮小和骨骼脆性定义。除了OI的骨骼并发症外,许多患者还报告对身体活动,疲劳和肌肉无力不耐受。确实,最近的研究表明,骨骼肌也直接或间接地受到OI的负面影响。鉴于骨骼和骨骼肌在生理学和病理生理学方面已建立的相互依存关系以及对OI患者骨骼肌病理学的观察,我们研究了使用可溶性激活素受体2B同时对骨骼和骨骼肌进行合成代谢靶向的治疗潜力( III型OI(oim)的小鼠模型中的ACVR2B)。用ACVR2B对12周龄的oim小鼠进行4周的治疗,导致骨​​骼和肌肉的显着增加,这与健康,野生型同窝仔中观察到的相似。这项概念验证研究为治疗OI在肌肉骨骼系统中的有害后果的整体方法提供了令人鼓舞的证据。

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