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治疗牙体缺损的釉质修复和再生的新趋势、新挑战和新视角。

Novel trends, challenges and new perspectives for enamel repair and regeneration to treat dental defects.

机构信息

Division of Biomedical Engineering, University of Saskatchewan, 57 Campus Dr., S7N 5A9, SK, Canada.

College of Dentistry, University of Saskatchewan, 105 Wiggins Rd, Saskatoon, S7N 5E4, SK, Canada.

出版信息

Biomater Sci. 2022 Jun 14;10(12):3062-3087. doi: 10.1039/d2bm00072e.

Abstract

Dental enamel is the hardest tissue in the human body, providing external protection for the tooth against masticatory forces, temperature changes and chemical stimuli. Once enamel is damaged/altered by genetic defects, dental caries, trauma, and/or dental wear, it cannot repair itself due to the loss of enamel producing cells following the tooth eruption. The current restorative dental materials are unable to replicate physico-mechanical, esthetic features and crystal structures of the native enamel. Thus, development of alternative approaches to repair and regenerate enamel defects is much needed but remains challenging due to the structural and functional complexities involved. This review paper summarizes the clinical aspects to be taken into consideration for the development of optimal therapeutic approaches to tackle dental enamel defects. It also provides a comprehensive overview of the emerging acellular and cellular approaches proposed for enamel remineralization and regeneration. Acellular approaches aim to artificially synthesize or re-mineralize enamel, whereas cell-based strategies aim to mimic the natural process of enamel development given that epithelial cells can be stimulated to produce enamel postnatally during the adult life. The key issues and current challenges are also discussed here, along with new perspectives for future research to advance the field of regenerative dentistry.

摘要

牙釉质是人体最坚硬的组织,为牙齿提供对外界的保护,抵抗咀嚼力、温度变化和化学刺激。一旦牙釉质因遗传缺陷、龋齿、创伤和/或牙齿磨损而受损/改变,由于牙齿萌出后釉质产生细胞的丧失,它就无法自我修复。目前的修复牙科材料无法复制天然牙釉质的物理-机械、美观特征和晶体结构。因此,开发替代方法来修复和再生牙釉质缺陷非常必要,但由于涉及的结构和功能复杂性,仍然具有挑战性。本文综述了开发针对牙釉质缺陷的最佳治疗方法所需考虑的临床方面,还全面概述了新兴的非细胞和细胞方法在牙釉质再矿化和再生方面的应用。非细胞方法旨在人工合成或再矿化牙釉质,而基于细胞的策略旨在模拟牙釉质发育的自然过程,因为上皮细胞在成年期后可以被刺激产生牙釉质。本文还讨论了关键问题和当前的挑战,并为推进再生牙科领域的未来研究提供了新的视角。

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