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碳酸饮料对乳恒牙更替期牙齿健康的影响

孙莲莲,李长春,姜忠敏,盛凤   

  1. 天津市第五中心医院
  • 收稿日期:2013-08-22 修回日期:2013-12-26 出版日期:2014-06-15 发布日期:2014-06-15
  • 通讯作者: 孙莲莲

A mechanism study of carbonated drinks affect health of the children primary and permanent teeth replacement

  • Received:2013-08-22 Revised:2013-12-26 Published:2014-06-15 Online:2014-06-15

摘要: 摘要 目的:研究碳酸饮料对儿童乳恒牙更替期牙齿健康的影响作用,分析其潜在的内在机制。方法:以可口可乐、雪碧和纯苏打水浸泡犬牙釉质样本,测定处理后的饮料中钙、磷浓度;分离牙乳头干细胞,以添加三种饮料的条件培养基进行细胞培养,分别使用PCR方法和western blot方法检测核因子-k B受体活化剂配体(RANKL)、骨保护素(OPG)和维生素D受体(VDR)的mRNA和蛋白质表达水平,分析各基因的可能角色及相互作用关系。结果:与生理盐水相比较,可口可乐及雪碧均有明显的脱钙与脱磷作用,而纯苏打水则表现出一定的钙、磷保护作用;三种饮料对RANKL基因的mRNA和蛋白质水平均无影响(P>0.05);可乐和雪碧可降低OPG的mRNA和蛋白表达水平,同时升高VDR基因的表达,纯苏打水对OPG基因的表达无影响,但可明显降低VDR基因的表达水平。结论:碳酸饮料可能通过调控成骨相关基因表达及维生素D受体家族共同影响儿童乳恒牙更替期的牙齿健康。

关键词: 碳酸饮料, 牙乳头干细胞, 骨保护素, 维生素D受体

Abstract: Abstract Objective:To research for the mechanism of carbonated drinks affecting health of the children primary and permanent teeth replacement. Methods:The dogs tooth enamel samples were soaked in coca-cola, sprite and pure soda, and the calcium, phosphorus concentrations were detected. Dental papilla stem cells were separated and cultured in the conditioned medium by adding three drinks. PCR and western blot method were used to detect the mRNA and protein expression levels of activator of nuclear factor-k B receptor ligand (RANKL), osteoprotegerin (OPG) and vitamin D receptor (VDR) , then the possible role of each gene and interactions relationship were analyzed. Results:Compared with saline, coca-cola and sprite showed their significantly decalcification and dephosphorization role, while plain soda water showed calcium and phosphorus protective effect. The three drinks had no effect on the mRNA and protein levels of RANKL gene (P> 0.05). Coca-cola and sprite can reduce OPG mRNA and protein levels, and at the same time increase the expression of the VDR gene. Plain soda water has no effect on the OPG gene expression, but can significantly reduce the level of the VDR gene. Conclusion:Carbonated drinks may affect the dental health of the children's primary and permanent teeth replacement by regulating bone related gene expression and vitamin D receptor family.

Key words: Carbonated drinks, Dental papilla stem cells, O P G, Vitamin D receptor