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类器官技术在女性生殖生物医学中的应用。

Organoid technology in female reproductive biomedicine.

机构信息

Department of Stem Cells and Developmental Biology, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, P.O. Box: 16635-148, Tehran, 1665659911, Iran.

Urogenital Stem Cell Research Center, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

出版信息

Reprod Biol Endocrinol. 2020 Jun 18;18(1):64. doi: 10.1186/s12958-020-00621-z.

Abstract

Recent developments in organoid technology are revolutionizing our knowledge about the biology, physiology, and function of various organs. Female reproductive biology and medicine also benefit from this technology. Organoids recapitulate features of different reproductive organs including the uterus, fallopian tubes, and ovaries, as well as trophoblasts. The genetic stability of organoids and long-lasting commitment to their tissue of origin during long-term culture makes them attractive substitutes for animal and in vitro models. Despite current limitations, organoids offer a promising platform to address fundamental questions regarding the reproductive system's physiology and pathology. They provide a human source to harness stem cells for regenerative medicine, heal damaged epithelia in specific diseases, and study biological processes in healthy and pathological conditions. The combination of male and female reproductive organoids with other technologies, such as microfluidics technology, would enable scientists to create a multi-organoid-on-a-chip platform for the next step to human-on-a-chip platforms for clinical applications, drug discovery, and toxicology studies. The present review discusses recent advances in producing organoid models of reproductive organs and highlights their applications, as well as technical challenges and future directions.

摘要

类器官技术的最新进展正在彻底改变我们对各种器官的生物学、生理学和功能的认识。女性生殖生物学和医学也受益于这项技术。类器官重现了不同生殖器官的特征,包括子宫、输卵管和卵巢,以及滋养层。类器官在长期培养过程中保持遗传稳定性和对其组织起源的长期承诺,使其成为动物和体外模型的有吸引力的替代品。尽管存在当前的限制,类器官为解决生殖系统生理学和病理学的基本问题提供了一个有前途的平台。它们为利用干细胞进行再生医学提供了一种人类来源,可修复特定疾病中受损的上皮组织,并在健康和病理条件下研究生物学过程。将男性和女性生殖类器官与其他技术(如微流控技术)相结合,将使科学家能够创建一个多器官类器官芯片平台,以迈向用于临床应用、药物发现和毒理学研究的人类类器官芯片平台的下一步。本文综述了生殖器官类器官模型的最新进展,并强调了它们的应用、技术挑战和未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01be/7301968/0db7b9589add/12958_2020_621_Fig1_HTML.jpg

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