Current Understanding of the Regulatory Mechanism of Tooth Root Development and Future Perspectives.

Natalie Black, Yang Chai
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Abstract

Background: The purpose of this review article is to understand tooth root development and its regulation through evolution and epigenetics as well as future implications involving root regeneration and tissue engineering.

Types of studies reviewed: we performed a comprehensive PubMed search to review all published studies related to the molecular regulation of tooth root development and regeneration until August 2022. Articles selected include original research studies and reviews.

Results: Epigenetic regulation strongly influences dental tooth root patterning and development. One study highlights how genes such as Ezh2 and Arid1a are crucial components in the development of tooth root furcation patterning. Another study shows that loss of Arid1a ultimately leads to shortened root morphology. Furthermore, researchers are utilizing information about root development and stem cells to find alternative treatments in replacing missing teeth through a stem cell-mediated bioengineered tooth root (bio-root).

Practical implications: Dentistry values preserving natural tooth morphology. Presently, implants are the best treatment for replacing missing teeth, but alternative future treatments might include tissue engineering/bio-root regeneration to restore our dentition.

目前对牙根发育调控机制的理解和未来展望。
背景:这篇综述文章的目的是通过进化和表观遗传学来了解牙根的发育及其调控,以及涉及牙根再生和组织工程的未来意义。综述的研究类型:我们进行了一项全面的PubMed搜索,以综述2022年8月之前所有已发表的与牙根发育和再生的分子调控相关的研究。所选文章包括原创研究和评论。结果:表观遗传学调控对牙根的形成和发育有重要影响。一项研究强调了Ezh2和Arid1a等基因是牙根分叉模式发展的关键组成部分。另一项研究表明,Arid1a的缺失最终导致根系形态缩短。此外,研究人员正在利用有关牙根发育和干细胞的信息,通过干细胞介导的生物工程牙根(bio-root)寻找替代方法来替换缺失的牙齿。实际意义:牙科重视保护自然牙齿形态。目前,种植体是替换缺失牙齿的最佳治疗方法,但未来的替代治疗方法可能包括组织工程/生物根再生,以恢复我们的牙列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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