Transient expression of human dentin sialoprotein gene in COS-7 cells 人牙本质涎蛋白在COS-7细胞中的表达
The changes of transcriptional activities of human dentin matrix protein 1 gene in induced human dental pulp stem cells 人牙髓干细胞诱导后人牙本质基质蛋白1基因转录活性的变化及意义
Unmineralized reparative dentin, odontoblast-like cells, human dental pulp cells and endothelial cells of the blood vessels. 在牙髓炎人牙中,LIM矿化蛋白1主要分布于前期牙本质、成牙本质细胞、未矿化的修复性牙本质、成牙本质细胞样细胞、牙髓成纤维细胞及血管内皮细胞。
The Effects of Excessive Fluoride on Type ⅰ Collagen, MMP-8 in Dentin and Calcium Transport in Dental Pulp Cells 过量氟对牙本质Ⅰ型胶原、基质金属蛋白酶-8和牙髓细胞钙离子转运的影响
Conclusion: HSP27 could play an important role in process of reparative dentin forming and protect pulp cells and inhibit developing of inflammation. 结论:HSP27在牙髓炎早期能够保护牙髓细胞,限制炎症发展,在损伤晚期则可能参与牙齿矿化修复过程。
Conclusion The distribution of HO-1 in normal human dental pulp suggests that HO-1 may play an important role in pulp flow regulation, dentin production and its calcifying; it also may play some roles in dental pulp cells metabolism and differentiation. 结论提示HO-1在牙髓血流调控、牙本质形成及牙髓细胞代谢和分化中可能起一定的作用。
The results of this study have provided theoretic basis for further investigation on the mechanism of the calcium transportation, dentin mineralization and signal transduction hi odontoblast cells. 本研究结果为我们今后进一步探讨成牙本质细胞钙离子转运机制,深人了解牙本质矿化及信号转导提供了理论依据。
The demineralization ability of cells cultured with demineralized dentin matrix was determined with alizarin red staining. Results: 1. Dental pulp cells derived from miniature pig deciduous teeth were polygonal or fibroblast-like. 通过茜素红染色,检测与脱矿牙本质基质共同培养的细胞矿化能力。结果:1.小型猪乳牙牙髓细胞形态呈多角形或成纤维细胞样,抗波形丝蛋白染色阳性,抗角蛋白染色阴性。
It was found that apical bud and incisor papilla cells pellet developed into well-formed enamel and dentin tissues, whereas the combination of HERS cells and molar papilla cells produced bone-like dentin tissues. 结果发现:Apicalbud和切牙牙乳头细胞团形成组织结构规则的釉质和牙本质组织,HERS细胞与磨牙牙乳头细胞团形成了骨样牙本质样组织。
Demineralized dentin matrix could possibly provide a good microenvironment for the proliferation and mineralization of dental pulp cells. 脱矿牙本质基质可以为乳牙牙髓细胞的增殖和矿化提供良好的微环境。