Division of Embryology, Faculty of Dental Medicine, Carol Davila University of Medicine and Pharmacy, 8 Eroii Sanitari Boulevard, 050474 Bucharest, Romania.
Division of Biophysics, Faculty of Dental Medicine, Carol Davila University of Medicine and Pharmacy, 8 Eroii Sanitari Boulevard, 050474 Bucharest, Romania.
Molecules. 2021 May 6;26(9):2725. doi: 10.3390/molecules26092725.
Dental pulp vitality is a desideratum for preserving the health and functionality of the tooth. In certain clinical situations that lead to pulp exposure, bioactive agents are used in direct pulp-capping procedures to stimulate the dentin-pulp complex and activate reparative dentinogenesis. Hydraulic calcium-silicate cements, derived from Portland cement, can induce the formation of a new dentin bridge at the interface between the biomaterial and the dental pulp. Odontoblasts are molecularly activated, and, if necessary, undifferentiated stem cells in the dental pulp can differentiate into odontoblasts. An extensive review of literature was conducted on MedLine/PubMed database to evaluate the histological outcomes of direct pulp capping with hydraulic calcium-silicate cements performed on animal models. Overall, irrespective of their physico-chemical properties and the molecular mechanisms involved in pulp healing, the effects of cements on tertiary dentin formation and pulp vitality preservation were positive. Histological examinations showed different degrees of dental pulp inflammatory response and complete/incomplete dentin bridge formation during the pulp healing process at different follow-up periods. Calcium silicate materials have the ability to induce reparative dentinogenesis when applied over exposed pulps, with different behaviors, as related to the animal model used, pulpal inflammatory responses, and quality of dentin bridges.
牙髓活力是保持牙齿健康和功能的必要条件。在某些导致牙髓暴露的临床情况下,生物活性制剂被用于直接盖髓术,以刺激牙本质-牙髓复合体并激活修复性牙本质形成。水硬性硅酸钙水泥来源于波特兰水泥,可在生物材料与牙髓之间的界面诱导形成新的牙本质桥。成牙本质细胞被分子激活,如果需要,牙髓中的未分化干细胞可以分化为成牙本质细胞。在 MedLine/PubMed 数据库上进行了广泛的文献综述,以评估在动物模型上进行的水硬性硅酸钙水泥直接盖髓的组织学结果。总的来说,无论其物理化学性质如何,以及涉及牙髓愈合的分子机制如何,水泥对第三期牙本质形成和牙髓活力保存的影响都是积极的。组织学检查显示,在不同的随访期内,牙髓愈合过程中牙髓炎症反应的程度不同,完全/不完全牙本质桥形成。当应用于暴露的牙髓时,硅酸钙材料具有诱导修复性牙本质形成的能力,其行为因所使用的动物模型、牙髓炎症反应和牙本质桥的质量而异。