Laboratory for Organ Regeneration, RIKEN Centre for Biosystem Dynamics Research, Kobe, Hyogo 650-0047, Japan.
Laboratory for Organ Regeneration, RIKEN Centre for Biosystem Dynamics Research, Kobe, Hyogo 650-0047, Japan; Organ Technologies Inc., Tokyo 105-0001, Japan.
Curr Opin Genet Dev. 2018 Oct;52:42-47. doi: 10.1016/j.gde.2018.05.008. Epub 2018 Jun 5.
In this decade, great progress has been made in the field of organ regeneration by incorporating emerging concepts from the fields of stem cell biology and developmental biology, and this progress has pioneered a new frontier in regenerative medicine. The generation of bioengineered organ germ-utilizing, fate-determined, organ-inductive epithelial and mesenchymal cells has provided evidence for the concept of functional organ regeneration in vivo. Organoid studies have verified that nearly all organs can be generated in the form of a mini-organ by recapitulating embryonic body patterning and establishing an organ-forming field among self-organizing pluripotent stem cells by utilizing cytokines that mimic the patterning and positional signals of organogenesis. More recently, the regeneration of an integumentary organ system composed of multiple organs, including hair follicles, has been achieved, demonstrating that regenerative medicine is forthcoming. In this review, we will introduce current research trends aimed at regenerating a functional three-dimensional (3D) organ, and we will discuss the potential use of these recent achievements and future directions needed to realize the next-generation of regenerative therapy for organ replacement.
在这十年中,通过将干细胞生物学和发育生物学领域的新兴概念融入其中,器官再生领域取得了巨大进展,这一进展开创了再生医学的新前沿。利用生物工程器官生殖细胞、命运决定、器官诱导的上皮和间充质细胞的产生,为体内功能性器官再生的概念提供了证据。类器官研究已经证实,几乎所有的器官都可以通过模拟胚胎体模式形成和在自我组织多能干细胞中建立器官形成场来利用模拟器官发生的模式形成和位置信号的细胞因子,以微型器官的形式产生。最近,已经实现了由多个器官组成的皮肤器官系统的再生,包括毛囊,这表明再生医学即将到来。在这篇综述中,我们将介绍旨在再生功能性三维(3D)器官的当前研究趋势,并讨论这些最新成果的潜在用途以及实现下一代器官替代再生治疗所需的未来方向。