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首页> 外文期刊>European journal of oral sciences >Composition of mineralizing incisor enamel in cystic fibrosis transmembrane conductance regulator-deficient mice
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Composition of mineralizing incisor enamel in cystic fibrosis transmembrane conductance regulator-deficient mice

机译:囊性纤维化跨膜电导调节剂缺陷型小鼠矿化门牙釉质的组成

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Formation of crystals in the enamel space releases protons that need to be buffered to sustain mineral accretion. We hypothesized that apical cystic fibrosis transmembrane conductance regulator (CFTR) in maturation ameloblasts transduces chloride into forming enamel as a critical step to secrete bicarbonates. We tested this by determining the calcium, chloride, and fluoride levels in developing enamel of Cftr-null mice by quantitative electron probe microanalysis. Maturation-stage enamel from Cftr-null mice contained less chloride and calcium than did wild-type enamel, was more acidic when stained with pH dyes ex vivo, and formed no fluorescent modulation bands after in vivo injection of the mice with calcein. To acidify the enamel further we exposed Cftr-null mice to fluoride in drinking water to stimulate proton release during formation of hypermineralized lines. In Cftr-deficient mice, fluoride further lowered enamel calcium without further reducing chloride levels. The data support the view that apical CFTR in maturation ameloblasts tranduces chloride into developing enamel as part of the machinery to buffer protons released during mineral accretion.
机译:搪瓷空间中晶体的形成释放出质子,需要对其进行缓冲以维持矿物质的积聚。我们假设成熟成釉细胞中的顶端囊性纤维化跨膜电导调节剂(CFTR)可以将氯化物转导形成牙釉质,这是分泌碳酸氢盐的关键步骤。我们通过定量电子探针显微分析确定Cftr-null小鼠发育牙釉质中钙,氯化物和氟化物的含量,对此进行了测试。 Cftr-null小鼠的成熟阶段搪瓷比野生型搪瓷含有更少的氯化物和钙,离体用pH染料染色时酸性更强,在体内用钙黄绿素注射后没有形成荧光调节带。为了进一步酸化牙釉质,我们将Cftr-null小鼠暴露于饮用水中的氟化物,以刺激高矿化线形成过程中质子的释放。在缺乏Cftr的小鼠中,氟化物可进一步降低牙釉质钙,而不会进一步降低氯化物含量。数据支持这样的观点,即成年成纤维细胞中的顶端CFTR将氯化物转导为发育中的牙釉质,这是缓冲矿物积聚过程中释放的质子的一部分。

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