Expression of phosphate transporters in optimized cell culture models for dental cells biomineralization.

Laure Merametdjian, Amandine David, Nina Bon, Greig Couasnay, Jérôme Guicheux, Céline Gaucher, Sarah Beck-Cormier, Laurent Beck
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Abstract

Phosphate is a key component of dental mineral composition. The physiological role of membrane proteins of dental cells is suspected to be crucial for mineralization mechanisms. Contrary to published data related to calcium, data on regulation of phosphate flux through membrane of mineralizing cells are scarce. To address this lack of data, we studied the expression of six membranous phosphate transporters in two dental cell lines: a rat odontoblastic cell line (M2H4) and a mouse ameloblastic cell line (ALC) for which we optimized the mineralizing culture conditions.

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磷酸盐转运蛋白在牙细胞生物矿化优化细胞培养模型中的表达。
磷酸盐是牙齿矿物组成的关键成分。牙细胞膜蛋白的生理作用被认为是矿化机制的关键。与已发表的钙相关数据相反,关于磷酸盐通过矿化细胞膜的通量调节的数据很少。为了解决这一数据的缺乏,我们研究了六种膜磷酸盐转运蛋白在两种牙细胞系中的表达:大鼠成牙细胞系(M2H4)和小鼠成釉细胞系(ALC),我们优化了矿化培养条件。
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Intraplaque hemorrhage, a potential consequence of periodontal bacteria gathering in human carotid atherothrombosis. Expression of phosphate transporters in optimized cell culture models for dental cells biomineralization. Impact of three endocrine disruptors, Bisphenol A, Genistein and Vinclozolin on female rat enamel. Mineral density of hypomineralised and sound enamel. A standardized procedure to obtain mesenchymal stem/stromal cells from minimally manipulated dental pulp and Wharton's jelly samples.
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