Chin J Dent Res. 2023 Sep 21;26(3):129-142. doi: 10.3290/j.cjdr.b4330823.
Maintaining the viability and avoiding necrosis of dental pulp are crucial to preserving the structural integrity and functioning of teeth. In recent years, cell-based regenerative endodontics has emerged as a promising approach to achieve this goal and has gained increasing attention in scientific research; however, in the confined space of the root canal system, hypoxic conditions can be both beneficial and detrimental, as they may promote angiogenesis in the graft to some extent but also lead to tissue necrosis if prolonged. Dental pulp stem cells (DPSCs) have been verified as multipotent cells that can promote angiogenesis and are therefore ideal candidates for realising real dental pulp regeneration within root canals. Thus, we focus on the underlying mechanisms of DPSCs to promote angiogenesis and summarise some preclinical studies and clinical trials involving transplanting of DPSCs to achieve real dental pulp regeneration, in the hope that this intractable source of perplexity in regenerative endodontics may be resolved sooner.
维持牙髓的活力和避免坏死对于保持牙齿的结构完整性和功能至关重要。近年来,基于细胞的再生性内科学已经成为实现这一目标的一种有前途的方法,并且在科学研究中受到越来越多的关注;然而,在根管系统的有限空间内,缺氧条件可能既有好处也有坏处,因为它们可能在一定程度上促进移植物中的血管生成,但如果持续时间过长,也会导致组织坏死。牙髓干细胞(DPSCs)已被证实为多能细胞,可促进血管生成,因此是在根管内实现真正牙髓再生的理想候选细胞。因此,我们专注于 DPSCs 促进血管生成的潜在机制,并总结了一些涉及移植 DPSCs 以实现真正牙髓再生的临床前研究和临床试验,希望这一再生性内科学中的棘手难题能够早日得到解决。