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在氟化物损伤之前或之后给予钙对体外培养的仓鼠分泌性釉质形成的影响。

Effect of calcium, given before or after a fluoride insult, on hamster secretory amelogenesis in vitro.

作者信息

Bronckers Antonius L J J, Bervoets Theodorus J M, Wöltgens Joseph H M, Lyaruu Donacian M

机构信息

Department of Oral Cell Biology, ACTA, Universiteit van Amsterdam and Vrije Universiteit, van der Boechorststr, 7, 1081 BT Amsterdam, the Netherlands.

出版信息

Eur J Oral Sci. 2006 May;114 Suppl 1:116-22; discussion 127-9, 380. doi: 10.1111/j.1600-0722.2006.00307.x.

Abstract

We tested the hypothesis that high-calcium medium given prior to or immediately after exposure to fluoride (F) reduces the negative effects of F on secretory amelogenesis. Hamster molar tooth germs were grown in organ culture in media with different calcium levels. Deposition of enamel matrix and matrix mineralization were monitored by incorporation of [3H]proline and uptake of 45Ca and acid-soluble 32PO4. Ameloblast structure and the occurrence of a fluorotic enamel matrix were examined by light and electron microscopy. A preculture of explants in high-calcium medium partially prevented the formation of fluorotic (non-mineralizing) enamel matrix, increased matrix secretion but could not prevent F-induced hypermineralization of the pre-exposure enamel. High-calcium medium, applied after F insult, accelerated the recovery of fluorotic matrix, improved ameloblast structure, enhanced amelogenin secretion, and increased enamel thickness. The data indicate that it might be the balance between the amount of mineral deposition and that of matrix secretion which is critical for the mineralization of newly secreted enamel. Exposure to F disturbs this balance by enhancing mineralization of the pre-exposure enamel, probably generating an excess of protons. High calcium may protect against F exposure by enhancing amelogenin secretion into the enamel space, thereby increasing the local buffering capacity at the mineralization front.

摘要

我们检验了这样一个假设

在暴露于氟化物(F)之前或之后立即给予高钙培养基,可降低F对分泌性釉质形成的负面影响。将仓鼠磨牙牙胚在含有不同钙水平的培养基中进行器官培养。通过掺入[3H]脯氨酸以及摄取45Ca和酸溶性32PO4来监测釉质基质的沉积和基质矿化。通过光学显微镜和电子显微镜检查成釉细胞结构以及氟斑釉质基质的出现情况。在外植体于高钙培养基中预培养可部分防止氟斑(非矿化)釉质基质的形成,增加基质分泌,但无法防止F诱导的暴露前釉质过度矿化。在F损伤后应用高钙培养基,可加速氟斑基质的恢复,改善成釉细胞结构,增强釉原蛋白分泌,并增加釉质厚度。数据表明,对于新分泌釉质的矿化而言,关键可能在于矿物质沉积量与基质分泌量之间的平衡。暴露于F会通过增强暴露前釉质矿化来扰乱这种平衡,可能会产生过量质子。高钙可能通过增强釉原蛋白向釉质间隙的分泌来保护免受F暴露的影响,从而增加矿化前沿局部的缓冲能力。

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