Department of Stomatognathic Function and Occlusal Reconstruction, Institute of Biomedical Sciences, Clinical Dentistry, Tokushima University Graduate School, 3-18-15 Kuramoto-cho, Tokushima 770-8504, Japan; RIKEN Center for Developmental Biology, Kobe, Hyogo 650-0047, Japan.
RIKEN Center for Developmental Biology, Kobe, Hyogo 650-0047, Japan; Organ Technologies Inc., Minato-ku, Tokyo 105-0001, Japan.
Curr Opin Cell Biol. 2017 Dec;49:84-90. doi: 10.1016/j.ceb.2017.12.011. Epub 2017 Dec 28.
The development of organoid techniques for regenerative therapy has progressed remarkably with the use of tissue-derived stem cells and pluripotent stem cells based on stem cell biology and tissue engineering technology. To realize whole-organ replacement therapy as next-generation regenerative medicine, it is expected that fully functional bioengineered organs can be reconstructed using an in vitro three-dimensional (3D) bioengineered organ germ and organoids by stem cell manipulation and self-organization. In this mini-review, we focused on substantial advances of 3D bioengineering technologies for the regeneration of complex oral organs with the reconstruction of 3D bioengineered organ germ using organ-inductive potential embryo-derived epithelial and mesenchymal cells. These bioengineering technologies have the potential for realization of future organ replacement therapy.
基于干细胞生物学和组织工程技术,利用组织来源的干细胞和多能干细胞,类器官技术在再生治疗方面取得了显著进展。为了实现下一代再生医学的全器官替换治疗,有望通过干细胞操作和自组织,使用体外三维(3D)生物工程器官原基和类器官来重建具有完全功能的生物工程器官。在这篇迷你综述中,我们重点介绍了使用具有器官诱导潜力的胚胎衍生上皮和间充质细胞重建 3D 生物工程器官原基的复杂口腔器官再生的 3D 生物工程技术的重大进展。这些生物工程技术具有实现未来器官替换治疗的潜力。