Hebei Medical University-National University of Ireland Galway Stem Cell Research Center, Hebei Medical University, Shijiazhuang, 050017, Hebei Province, China.
Hebei Research Center for Stem Cell Medical Translational Engineering, Hebei Medical University, Shijiazhuang, 050017, Hebei Province, China.
Stem Cell Rev Rep. 2024 Jul;20(5):1213-1226. doi: 10.1007/s12015-024-10714-6. Epub 2024 Mar 27.
In recent years, the rapid emergence of 3D organoid technology has garnered significant attention from researchers. These miniature models accurately replicate the structure and function of human tissues and organs, offering more physiologically relevant platforms for cancer research. These intricate 3D structures not only serve as promising models for studying human cancer, but also significantly contribute to the advancement of various potential applications in the field of cancer research. To date, organoids have been efficiently constructed from both normal and malignant tissues originating from patients. Using such bioengineering platforms, simulations of infections and cancer processes, mutations and carcinogenesis can be achieved, and organoid technology is also expected to facilitate drug testing and personalized therapies. In conclusion, regenerative medicine has the potential to enhance organoid technology and current transplantation treatments by utilizing genetically identical healthy organoids as substitutes for irreversibly deteriorating diseased organs. This review explored the evolution of cancer organoids and emphasized the significant role these models play in fundamental research and the advancement of personalized medicine in oncology.
近年来,3D 类器官技术的迅速出现引起了研究人员的极大关注。这些微型模型准确地复制了人体组织和器官的结构和功能,为癌症研究提供了更具生理相关性的平台。这些复杂的 3D 结构不仅是研究人类癌症的有前途的模型,而且还极大地促进了癌症研究领域中各种潜在应用的发展。迄今为止,已经成功地从患者的正常和恶性组织中构建了类器官。利用这些生物工程平台,可以模拟感染和癌症过程、突变和癌变,类器官技术还有望促进药物测试和个性化治疗。总之,再生医学有可能通过利用遗传上相同的健康类器官作为不可逆恶化的患病器官的替代品来增强类器官技术和当前的移植治疗。本综述探讨了癌症类器官的演变,并强调了这些模型在基础研究和肿瘤学个性化医学发展中的重要作用。