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Practical whole-tooth restoration utilizing autologous bioengineered tooth germ transplantation in a postnatal canine model

机译:在产后犬模型中利用自体生物工程牙胚移植进行实用的全牙修复

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摘要

Whole-organ regeneration has great potential for the replacement of dysfunctional organs through the reconstruction of a fully functional bioengineered organ using three-dimensional cell manipulation in vitro. Recently, many basic studies of whole-tooth replacement using three-dimensional cell manipulation have been conducted in a mouse model. Further evidence of the practical application to human medicine is required to demonstrate tooth restoration by reconstructing bioengineered tooth germ using a postnatal large-animal model. Herein, we demonstrate functional tooth restoration through the autologous transplantation of bioengineered tooth germ in a postnatal canine model. The bioengineered tooth, which was reconstructed using permanent tooth germ cells, erupted into the jawbone after autologous transplantation and achieved physiological function equivalent to that of a natural tooth. This study represents a substantial advancement in whole-organ replacement therapy through the transplantation of bioengineered organ germ as a practical model for future clinical regenerative medicine.
机译:通过在体外使用三维细胞操纵重建功能齐全的生物工程器官,全器官再生具有替代功能障碍器官的巨大潜力。最近,已经在小鼠模型中进行了许多使用三维细胞操作进行全牙置换的基础研究。需要使用出生后大动物模型重建生物工程的牙胚来证明牙齿修复,以进一步证明其在人类医学上的实际应用。在这里,我们证明了通过在出生后的犬模型中生物工程化的牙胚的自体移植来修复功能性牙齿。利用永久牙胚细胞重建的生物工程牙齿在自体移植后突入颌骨,并获得了与天然牙齿相当的生理功能。这项研究代表了通过移植生物工程器官细菌作为未来临床再生医学的实用模型,在全器官替代疗法方面的重大进步。

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