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Functional ectodermal organ regeneration as the next generation of organ replacement therapy

机译:功能外胚器官再生作为下一代器官替代疗法

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摘要

In this decade, substantial progress in the fields of developmental biology and stem cell biology has ushered in a new era for three-dimensional organ regenerative therapy. The emergence of novel three-dimensional cell manipulation technologies enables the effective mimicking of embryonic organ germ formation using the fate-determined organ-inductive potential of epithelial and mesenchymal stem cells. This advance shows great potential for the regeneration of functional organs with substitution of complete original function in situ. Organoids generated from multipotent stem cells or tissue stem cells via establishment of an organ-forming field can only partially recover original organ function owing to the size limitation; they are considered ‘mini-organs’. Nevertheless, they hold great promise to realize regenerative medicine. In particular, regeneration of a functional salivary gland and an integumentary organ system by orthotopic and heterotopic implantation of organoids clearly points to the future direction of organ regeneration research. In this review, we describe multiple strategies and recent progress in regenerating functional three-dimensional organs, focusing on ectodermal organs, and discuss their potential and future directions to achieve organ replacement therapy as a next-generation regenerative medicine.
机译:在这十年中,发展生物学和干细胞生物学领域的实质性进展已经迎来了三维器官再生治疗的新时代。新型三维细胞操纵技术的出现使得利用上皮和间充质干细胞的命运确定器官诱导电位有效地模拟胚胎器官常量。该进程对功能性器官再生具有替代原位的替代性的巨大潜力。通过建立器官形成场从多能干细胞或组织干细胞产生的有机体可以仅部分恢复原始器官功能,由于尺寸限制;他们被认为是'迷你器官'。尽管如此,他们对实现再生医学的承诺很有希望。特别地,通过原位和异位植入有机体植入功能性唾液腺和整数器官系统的再生明显指向器官再生研究的未来方向。在本文中,我们描述了多种策略和最近在再生功能的三维器官中的进展,重点关注外胚层器官,并讨论其潜在和未来的方向,以实现器官替代治疗作为下一代再生医学。

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