Neurogenesis and Organogenesis Group, RIKEN Center for Developmental Biology, Kobe 650-0047, Japan.
Cell Stem Cell. 2013 May 2;12(5):520-30. doi: 10.1016/j.stem.2013.04.009.
The behavior of stem cells, when they work collectively, can be much more sophisticated than one might expect from their individual programming. This Perspective covers recent discoveries about the dynamic patterning and structural self-formation of complex organ buds in 3D stem cell culture, including the generation of various neuroectodermal and endodermal tissues. For some tissues, epithelial-mesenchymal interactions can also be manipulated in coculture to guide organogenesis. This new area of stem cell research-the spatiotemporal control of dynamic cellular interactions-will open a new avenue for next-generation regenerative medicine.
当干细胞集体工作时,它们的行为可能比人们从其个体编程中预期的要复杂得多。本观点综述了最近在 3D 干细胞培养中关于复杂器官芽的动态模式形成和结构自形成的发现,包括各种神经外胚层和内胚层组织的产生。对于某些组织,还可以在共培养中操纵上皮-间充质相互作用以指导器官发生。这一新的干细胞研究领域——动态细胞相互作用的时空控制——将为下一代再生医学开辟新途径。