杜氏肌营养不良
肌营养不良蛋白
医学
肌营养不良
外显子跳跃
生物信息学
遗传增强
基因组编辑
基因检测
基因
遗传咨询
神经科学
遗传性疾病
基因工程
基因缺失
突变
mdx鼠标
遗传异质性
遗传学
外显子
计算生物学
心理干预
临床试验
作者
Agnieszka Łoboda,Jeffrey S. Chamberlain,Jozef Dulak
标识
DOI:10.1016/j.omtn.2025.102759
摘要
Duchenne muscular dystrophy (DMD) is a severe, X-linked genetic disorder caused by mutations in the DMD gene, which encodes dystrophin, an essential structural muscle protein. Currently, there are no cures for DMD, and available therapies primarily focus on alleviating symptoms rather than correcting the underlying genetic defect. However, restoration of a shortened version of dystrophin offers the potential for partially addressing the underlying cause of the disease. This review focuses on the promises and challenges of various genetic strategies, such as exon skipping, gene replacement, and gene editing (e.g., by CRISPR-Cas9) aimed at restoring or replacing the dystrophin expression or upregulating utrophin, a paralog of dystrophin that is primarily expressed during fetal life. Finally, novel approaches for modulatory therapies are considered. While they cannot address the cause of DMD, they offer the potential to attenuate the wide-ranging consequences of dystrophin deficiency. Although some of these interventions have demonstrated encouraging preclinical results and early-stage clinical success, challenges remain in optimizing delivery methods, addressing immune responses, and ensuring long-term therapeutic efficacy. Achieving the latter will be crucial for demonstrating the effectiveness of already registered exon-skipping strategies and gene therapy with microdystrophin, which is of utmost importance for the validity of the field.
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