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诱导多能干细胞用于组织工程化骨骼肌。

Induced Pluripotent Stem Cells for Tissue-Engineered Skeletal Muscles.

机构信息

Division of Surgery and Interventional Science, University College London, London NW3 2QG, UK.

Department of iPS Cell Applications, Kobe University, Kobe 657-8501, Japan.

出版信息

Int J Mol Sci. 2023 Jul 15;24(14):11520. doi: 10.3390/ijms241411520.

Abstract

Skeletal muscle, which comprises a significant portion of the body, is responsible for vital functions such as movement, metabolism, and overall health. However, severe injuries often result in volumetric muscle loss (VML) and compromise the regenerative capacity of the muscle. Tissue-engineered muscles offer a potential solution to address lost or damaged muscle tissue, thereby restoring muscle function and improving patients' quality of life. Induced pluripotent stem cells (iPSCs) have emerged as a valuable cell source for muscle tissue engineering due to their pluripotency and self-renewal capacity, enabling the construction of tissue-engineered artificial skeletal muscles with applications in transplantation, disease modelling, and bio-hybrid robots. Next-generation iPSC-based models have the potential to revolutionize drug discovery by offering personalized muscle cells for testing, reducing reliance on animal models. This review provides a comprehensive overview of iPSCs in tissue-engineered artificial skeletal muscles, highlighting the advancements, applications, advantages, and challenges for clinical translation. We also discussed overcoming limitations and considerations in differentiation protocols, characterization methods, large-scale production, and translational regulations. By tackling these challenges, iPSCs can unlock transformative advancements in muscle tissue engineering and therapeutic interventions for the future.

摘要

骨骼肌占人体的很大一部分,负责运动、代谢和整体健康等重要功能。然而,严重的损伤常常导致体积性肌肉损失(VML),并损害肌肉的再生能力。组织工程肌肉为解决丢失或受损的肌肉组织提供了一种潜在的解决方案,从而恢复肌肉功能并提高患者的生活质量。诱导多能干细胞(iPSCs)由于其多能性和自我更新能力,已成为肌肉组织工程的有价值的细胞来源,可用于构建组织工程人工骨骼肌,应用于移植、疾病建模和生物混合机器人。基于下一代 iPSC 的模型有可能通过提供用于测试的个性化肌肉细胞来彻底改变药物发现,减少对动物模型的依赖。本综述全面概述了组织工程人工骨骼肌中的 iPSCs,强调了其在临床转化方面的进展、应用、优势和挑战。我们还讨论了克服分化方案、特征描述方法、大规模生产和转化监管方面的限制和考虑因素。通过解决这些挑战,iPSCs 可以为肌肉组织工程和未来的治疗干预带来变革性的进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3813/10380861/4dbdd5bfcacc/ijms-24-11520-g004.jpg

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