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生物活性化合物对牙源性分化和矿化的影响。

Effects of Bioactive Compounds on Odontogenic Differentiation and Mineralization.

机构信息

1 The Shapiro Family Laboratory of Viral Oncology and Aging Research, UCLA School of Dentistry, Los Angeles, CA, USA.

2 Section of Restorative Dentistry, UCLA School of Dentistry, Los Angeles, CA, USA.

出版信息

J Dent Res. 2017 Jan;96(1):107-115. doi: 10.1177/0022034516675152. Epub 2016 Oct 25.

Abstract

Direct pulp capping involves the placement of dental materials directly onto vital pulp tissues after deep caries removal to stimulate the regeneration of reparative dentin. This physical barrier will serve as a "biological seal" between these materials and the pulp tissue. Although numerous direct pulp capping materials are available, the use of small bioactive compounds that can potently stimulate and expedite reparative dentin formation is still underexplored. Here, the authors compared and evaluated the pro-osteogenic and pro-odontogenic effects of 4 small bioactive compounds- phenamil (Phen), purmorphamine (Pur), genistein (Gen), and metformin (Met). The authors found that these compounds at noncytotoxic concentrations induced differentiation and mineralization of preosteoblastic MC3T3-E1 cells and preodontoblastic dental pulp stem cells (DPSCs) in a dose-dependent manner. Among them, Phen consistently and potently induced differentiation and mineralization in vitro. A single treatment with Phen was sufficient to enhance the mineralization potential of DPSCs in vitro. More importantly, Phen-treated DPSCs showed enhanced odontogenic differentiation and mineralization in vivo. Our study suggests that these small bioactive compounds merit further study for their potential clinical use as pulp capping materials.

摘要

直接盖髓术是指在深龋去腐后,将牙科材料直接置于活髓组织上,以刺激修复性牙本质的再生。这种物理屏障将成为这些材料与牙髓组织之间的“生物密封”。尽管有许多直接盖髓材料可用,但仍未充分探索使用能够强烈刺激和加速修复性牙本质形成的小型生物活性化合物。在这里,作者比较和评估了 4 种小型生物活性化合物——苯佐卡因(Phen)、普马嗪(Pur)、染料木黄酮(Gen)和二甲双胍(Met)的促成骨和促成牙本质作用。作者发现,这些化合物在非细胞毒性浓度下,以剂量依赖性方式诱导前成骨细胞 MC3T3-E1 细胞和成牙本质细胞牙髓干细胞(DPSCs)的分化和矿化。其中,Phen 持续且强烈地诱导体外分化和矿化。单次 Phen 处理足以增强 DPSCs 的体外矿化潜能。更重要的是,Phen 处理的 DPSCs 显示出增强的牙本质分化和体内矿化。我们的研究表明,这些小型生物活性化合物值得进一步研究,以作为牙髓盖髓材料的潜在临床用途。

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