用器官胚法将多能干细胞与牙胚源性上皮结合,发育成再生牙

R. Morita, K. Nakao, M. Ogawa, Y. Saji, K. Ishida, T. Tsuji
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引用次数: 2

摘要

再生疗法的最终目标是开发生物工程器官,以取代疾病、受伤或衰老后失去或受损的器官。最近,我们发现可以通过体外细胞操作重建人工器官胚芽,从而生成结构正确的牙齿(Nature Methods 4,227 - 230,2007)。本研究发现,由胚胎癌细胞等多能干细胞分化而来的神经嵴样细胞,可以通过器官胚法发育成具有牙胚上皮的再生牙齿。二甲亚砜(DMSO)刺激EC细胞,细胞分选分离分化细胞为DMSO-EC细胞。我们发现在DMSO-EC细胞中未检测到多能干细胞标记基因(Oct3/4和Nanog)的表达。与EC细胞相比,DMSO-EC细胞神经嵴标记基因Pax3、Slug和牙间质标记基因Msxl、Pax9、Lhx7的表达明显增加。此外,在体外和体内均可通过DMSO-EC细胞与牙胚上皮结合生成结构正确的牙齿。我们目前的研究结果表明,多能干细胞有可能成为未来再生治疗中用于器官替代的生物工程器官胚的候选细胞来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pluripotent stem cells developed into regenerated tooth by organ germ method in combination with tooth germ-derived epithelium
The regenerative therapy ultimately aims to develop bioengineered organs that can replace lost or damaged organs following disease, injury or aging. Recently, we showed that the artificial organ germ, which generates a structurally correct tooth, could be reconstituted by in vitro cell manipulation (Nature Methods 4, 227-230, 2007). In this study, we revealed that neural crest-like cells, which were differentiated from pluripotent stem cells such as embryonal carcinoma (EC) cells, could develop the regenerated tooth by organ germ method with tooth germ epithelium. EC cells were stimulated with dimethyl sulfoxide (DMSO) and differentiated cells were isolated by cell sorting as DMSO-EC cells. We found that the expressions of pluripotent stem cell marker genes (Oct3/4 and Nanog) could not be detected in DMSO-EC cells. In contrast, the expressions of neural crest-marker genes (Pax3 and Slug) and of dental mesenchyme-marker genes (Msxl, Pax9 and Lhx7) increased in DMSO-EC cells, compared with those in EC cells. Furthermore, the structurally correct tooth can be generated by combining DMSO-EC cells and tooth germ epithelium, both in vitro and in vivo. Our current results indicated the possibility that pluripotent stem cells are applicable as a candidate of cell sources to develop of a bioengineered organ germ for the organ replacement in the future regenerative therapy.
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