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Synergizing Engineering and Biology to Treat and Model Skeletal Muscle Injury and Disease

机译:协同工程与生物学治疗和模型骨骼肌损伤和疾病

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摘要

Although skeletal muscle is one of the most regenerative organs in our body, various genetic defects, alterations in extrinsic signaling, or substantial tissue damage can impair muscle function and the capacity for self-repair. The diversity and complexity of muscle disorders have attracted much interest from both cell biologists and, more recently, bioengineers, leading to concentrated efforts to better understand muscle pathology and develop more efficient therapies. This review describes the biological underpinnings of muscle development, repair, and disease, and discusses recent bioengineering efforts to design and control myomimetic environments, both to study muscle biology and function and to aid in the development of new drug, cell, and gene therapies for muscle disorders. The synergy between engineering-aided biological discovery and biology-inspired engineering solutions will be the path forward for translating laboratory results into clinical practice.
机译:虽然骨骼肌是我们身体中最再生器官之一,但各种遗传缺陷,外部信号传导的改变,或大量组织损伤可能会损害肌肉功能和自我修复的能力。 肌肉疾病的多样性和复杂性引起了细胞生物学家的许多兴趣,最近是生物工程,导致努力更好地了解肌肉病理,并开发更有效的疗法。 本综述描述了肌肉发育,修复和疾病的生物学底划,并讨论了最近的生物工程努力设计和控制肌肉肌瘤环境,既可以研究肌肉生物学和功能,并帮助开发新药,细胞和基因治疗 肌肉障碍。 工程辅助生物发现和生物启发工程解决方案之间的协同作用将成为将实验室结果转化为临床实践的道路。

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