Department of Biochemistry, Institute of Chemistry, University of São Paulo, Avenida Professor Lineu Prestes 748, Vila Universitária, São Paulo 05508-000, Brazil.
Department of Natural Sciences, Bonn-Rhein-Sieg University of Applied Sciences, von-Liebig-Straße 20, 53359 Rheinbach, NRW, Germany.
Int J Mol Sci. 2020 Jun 4;21(11):4031. doi: 10.3390/ijms21114031.
With increasing life expectancy, demands for dental tissue and whole-tooth regeneration are becoming more significant. Despite great progress in medicine, including regenerative therapies, the complex structure of dental tissues introduces several challenges to the field of regenerative dentistry. Interdisciplinary efforts from cellular biologists, material scientists, and clinical odontologists are being made to establish strategies and find the solutions for dental tissue regeneration and/or whole-tooth regeneration. In recent years, many significant discoveries were done regarding signaling pathways and factors shaping calcified tissue genesis, including those of tooth. Novel biocompatible scaffolds and polymer-based drug release systems are under development and may soon result in clinically applicable biomaterials with the potential to modulate signaling cascades involved in dental tissue genesis and regeneration. Approaches for whole-tooth regeneration utilizing adult stem cells, induced pluripotent stem cells, or tooth germ cells transplantation are emerging as promising alternatives to overcome existing in vitro tissue generation hurdles. In this interdisciplinary review, most recent advances in cellular signaling guiding dental tissue genesis, novel functionalized scaffolds and drug release material, various odontogenic cell sources, and methods for tooth regeneration are discussed thus providing a multi-faceted, up-to-date, and illustrative overview on the tooth regeneration matter, alongside hints for future directions in the challenging field of regenerative dentistry.
随着预期寿命的延长,对牙科组织和全牙再生的需求变得越来越重要。尽管医学取得了重大进展,包括再生疗法,但牙科组织的复杂结构给再生牙科领域带来了一些挑战。细胞生物学家、材料科学家和临床牙医正在进行跨学科努力,以建立策略并找到牙科组织再生和/或全牙再生的解决方案。近年来,关于信号通路和塑造钙化组织发生的因素,包括牙齿的信号通路和因素,有了许多重大发现。新型生物相容性支架和基于聚合物的药物释放系统正在开发中,可能很快就会产生具有潜在能力的临床适用生物材料,以调节参与牙科组织发生和再生的信号级联。利用成体干细胞、诱导多能干细胞或牙原细胞移植进行全牙再生的方法作为克服现有体外组织生成障碍的有前途的替代方法正在出现。在这个跨学科的综述中,讨论了细胞信号指导牙科组织发生的最新进展、新型功能化支架和药物释放材料、各种成牙细胞来源以及牙齿再生的方法,从而提供了关于牙齿再生问题的多方面、最新和说明性的概述,并为再生牙科领域富有挑战性的未来方向提供了线索。