Maher Atari, Núñez-Toldrà Raquel, Carrio Neus, Ferres-Padro Eduard, Ali Hamad, Montori Sheyla, Al Madhoun Ashraf
UIC Regenerative Medicine Research Institute, Universitat Internacional de Catalunya, St Josep Trueta s/n, Sant Cugat del Vallès, 08195 Barcelona, Spain.
Oral and Maxillofacial Surgery Department, Fundació Hospital de Nens de Barcelona, 08017 Barcelona, Spain.
Dent J (Basel). 2018 Sep 22;6(4):48. doi: 10.3390/dj6040048.
The aim of this study is to compare the osteogenic differentiation capacity of the dental pulp pluripotent-like stem cells (DPPSCs) using conditional media pretreated with ProRoot-MTA, Biodentine (BD) or the newly manufactured pure Portland cement Med-PZ (MZ). DPPSCs, isolated from human third molars, are the most relevant cell model to draw conclusions about the role of biomaterials on dental tissue regeneration. Cytotoxicity, alkaline phosphatase (ALP) activity, and calcium deposition analysis were evaluated at different differentiation time points. Gene expression of key osteogenic markers (, Collagen I and Osteocalcin) was determined by qRT-PCR analysis. The osteogenic capacity of cells cultured in conditioned media prepared from MZ or MTA cements was comparable. BD conditioned media supported cell proliferation but failed to induce osteogenesis. Relative to controls and other cements, high osteogenic gene expression was observed in cultures pre-treated with the novel endodontic cement MZ. In conclusion, the in vitro behavior of a MZ- endodontic cement was evaluated, showing similar enhanced cell proliferation compared to other commercially available cements but with an enhanced osteogenic capacity with prospective potential as a novel cement for endodontic treatments.
本研究的目的是比较使用经ProRoot-MTA、Biodentine(BD)或新制备的纯波特兰水泥Med-PZ(MZ)预处理的条件培养基培养的牙髓多能样干细胞(DPPSCs)的成骨分化能力。从人类第三磨牙分离出的DPPSCs是用于得出生物材料在牙组织再生中作用结论的最相关细胞模型。在不同的分化时间点评估细胞毒性、碱性磷酸酶(ALP)活性和钙沉积分析。通过qRT-PCR分析确定关键成骨标志物(I型胶原蛋白和骨钙素)的基因表达。在由MZ或MTA水泥制备的条件培养基中培养的细胞的成骨能力相当。BD条件培养基支持细胞增殖,但未能诱导成骨。相对于对照组和其他水泥,在用新型牙髓水泥MZ预处理的培养物中观察到高成骨基因表达。总之,评估了MZ牙髓水泥的体外行为,结果显示与其他市售水泥相比,其细胞增殖增强,且具有增强的成骨能力,有望作为一种新型牙髓治疗水泥。