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牙周膜细胞及牙釉质基质蛋白衍生物克隆中的基因谱。

Gene profile in periodontal ligament cells and clones with enamel matrix proteins derivative.

作者信息

Barkana Idit, Alexopoulou Eleni, Ziv Shoshi, Jacob-Hirsch Jasmin, Amariglio Ninette, Pitaru Sandu, Vardimon Alexander D, Nemcovsky Carlos E

机构信息

Department of Orthodontics, Hadassah Faculty of Dental Medicine, Hebrew University, Jerusalem, Israel.

出版信息

J Clin Periodontol. 2007 Jul;34(7):599-609. doi: 10.1111/j.1600-051X.2007.01076.x. Epub 2007 Apr 13.

Abstract

AIM

Evaluate enamel matrix proteins derivative effect on gene expression profiles in cultured human periodontal ligament cell population and its clones.

MATERIAL AND METHODS

Human periodontal ligament (PDL) cells were explanted. Cell cloning was performed and clones classified into fibroblastic (FB) and mineralized tissue forming (MTF) according to their capacity to express alkaline phosphatase and form mineralized tissue. All cell cultures were grown for 7 days, with and without enamel proteins added to the medium. Following RNA extraction, expression profiling was performed by hybridization with a DNA micro-array. Selected genes differed from the control at a significant level smaller than p<0.01.

RESULTS

Enamel proteins induced major qualitative changes in mRNA expression in all PDL cell populations, differently affecting the entire PDL cell population and its clones. In the entire PDL cell population, enamel proteins significantly enhanced PDL cell function, with a general effect on enhanced cell functional metabolism.

CONCLUSIONS

Enamel proteins enhanced gene expression responsible for protein and mineralized tissue synthesis in the entire PDL population. In the MTF clones, nucleic acid metabolism, protein metabolism and signal transduction related genes were up-regulated, while in the FB clones, up-regulated genes were related to cell adhesion, nucleic acid metabolism and signal transduction.

摘要

目的

评估釉基质蛋白衍生物对培养的人牙周膜细胞群体及其克隆体基因表达谱的影响。

材料与方法

取人牙周膜(PDL)细胞进行原代培养。进行细胞克隆,并根据其表达碱性磷酸酶和形成矿化组织的能力将克隆体分为成纤维细胞样(FB)和矿化组织形成(MTF)两类。所有细胞培养物均培养7天,培养基中添加或不添加釉质蛋白。提取RNA后,通过与DNA微阵列杂交进行表达谱分析。筛选出与对照组相比差异显著(p<0.01)的基因。

结果

釉质蛋白在所有PDL细胞群体中诱导了mRNA表达的主要定性变化,对整个PDL细胞群体及其克隆体产生了不同影响。在整个PDL细胞群体中,釉质蛋白显著增强了PDL细胞功能,对增强细胞功能代谢具有普遍作用。

结论

釉质蛋白增强了整个PDL群体中负责蛋白质和矿化组织合成的基因表达。在MTF克隆体中,与核酸代谢、蛋白质代谢和信号转导相关的基因上调,而在FB克隆体中,上调的基因与细胞黏附、核酸代谢和信号转导相关。

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