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首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Effect of calcium phosphate cements on growth and odontoblastic differentiation in human dental pulp cells.
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Effect of calcium phosphate cements on growth and odontoblastic differentiation in human dental pulp cells.

机译:磷酸钙水泥对人牙髓细胞生长和成牙本质细胞分化的影响。

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OBJECTIVE: Calcium phosphate cements (CPCs) are an interesting class of bone substitute materials. However, the biological effects of CPCs have not been well studied in human dental pulp cells (HDPCs). The purpose of this study was to investigate the effects of CPCs on the mechanical properties, growth, and odontoblastic differentiation in HDPCs compared with Portland cement (PC) and mineral trioxide aggregate (MTA). METHODS: Experimental CPCs either containing chitosan (Ch-CPC) or without chitosan (CPC) were composed from the alpha-tricalcium phosphate powder. Setting time, compressive strength measurements, cell growth, alkaline phosphatase (ALP) activity, the levels of messenger RNA for differentiation-related genes, and mineralization of the HDPCs on various cements were assessed. RESULTS: The setting time for CPC-Ch was 7.5 minutes, which was significantly less than the 8.6 minutes for the CPC. On the seventh day of immersion, the compressive strength of CPC-CH reached 13.1 MPa, which was higher than 10.8 MPa of CPC. CPC and Ch-CPC-treated cells showed decreased cell proliferation but increased the levels of ALP activity, enhanced mineralized nodule formation, and upregulated odontoblastic markers messenger RNA including osteonectin, osteopontin, bone sialoprotein, dentin matrix protein-1, matrix extracellular phosphoglycoprotein, and dentin sialophosphoprotein (DSPP), compared with untreated control. The response of CPC and CP-CPC were similar to that of PC and MTA. However, the adhesion, growth, and differentiation in Ch-CPC-treated cells were similar to that in the CPC. CONCLUSION: CPC may be useful for pulp-capping applications based on its abilities to promote HDPC differentiation.
机译:目的:磷酸钙水泥(CPC)是一类有趣的骨替代材料。但是,在人类牙髓细胞(HDPC)中,CPC的生物学效应尚未得到很好的研究。这项研究的目的是调查与波特兰水泥(PC)和三氧化二矿骨料(MTA)相比,CPC对HDPC的力学性能,生长和牙本质分化的影响。方法:由α-磷酸三钙粉末组成的含壳聚糖(Ch-CPC)或不含壳聚糖(CPC)的实验CPC。评估凝结时间,抗压强度测量,细胞生长,碱性磷酸酶(ALP)活性,分化相关基因的信使RNA水平以及HDPC在各种水泥上的矿化程度。结果:CPC-Ch的设置时间为7.5分钟,大大低于CPC的8.6分钟。浸泡的第七天,CPC-CH的抗压强度达到13.1 MPa,高于CPC的10.8 MPa。 CPC和Ch-CPC处理的细胞显示出细胞增殖减少,但ALP活性水平增加,矿化的结节形成增加,并且牙本质成骨标记信使RNA上调,包括骨粘连蛋白,骨桥蛋白,骨唾液蛋白,牙本质基质蛋白1,基质细胞外磷酸糖蛋白和牙本质唾液磷蛋白(DSPP),与未处理的对照组相比。 CPC和CP-CPC的响应与PC和MTA的响应相似。但是,经Ch-CPC处理的细胞的粘附,生长和分化与CPC相似。结论:CPC具有促进HDPC分化的能力,因此可能对浆盖应用很有用。

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