Dalle Carbonare Luca, Braggio Michele, Minoia Arianna, Cominacini Mattia, Romanelli Maria Grazia, Pessoa João, Tiso Natascia, Valenti Maria Teresa
Department of Engineering for the Innovation Medicine, University of Verona, 37100 Verona, Italy.
Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, 37100 Verona, Italy.
Cells. 2024 Dec 30;14(1):28. doi: 10.3390/cells14010028.
Zebrafish () have emerged as a valuable model organism for investigating musculoskeletal development and the pathophysiology of associated diseases. Key genes and biological processes in zebrafish that closely mirror those in humans, rapid development, and transparent embryos make zebrafish ideal for the in vivo studies of bone and muscle formation, as well as the molecular mechanisms underlying musculoskeletal disorders. This review focuses on the utility of zebrafish in modeling various musculoskeletal conditions, with an emphasis on bone diseases such as osteoporosis and osteogenesis imperfecta, as well as muscle disorders like Duchenne muscular dystrophy. These models have provided significant insights into the molecular pathways involved in these diseases, helping to identify the key genetic and biochemical factors that contribute to their progression. These findings have also advanced our understanding of disease mechanisms and facilitated the development of potential therapeutic strategies for musculoskeletal disorders.
斑马鱼已成为研究肌肉骨骼发育及相关疾病病理生理学的重要模式生物。斑马鱼体内的关键基因和生物学过程与人类极为相似,加上其发育迅速且胚胎透明,使其成为研究骨骼和肌肉形成以及肌肉骨骼疾病潜在分子机制的理想活体模型。本文综述了斑马鱼在模拟各种肌肉骨骼疾病方面的应用,重点介绍了诸如骨质疏松症和成骨不全症等骨骼疾病,以及杜氏肌营养不良症等肌肉疾病。这些模型为深入了解这些疾病所涉及的分子途径提供了重要线索,有助于确定导致疾病进展的关键遗传和生化因素。这些研究结果也增进了我们对疾病机制的理解,并推动了肌肉骨骼疾病潜在治疗策略的发展。