Department of Cytokine Biology, The Forsyth Institute, Harvard School of Dental Medicine, Boston, MA 02115, USA.
J Dent Res. 2011 Jun;90(6):788-92. doi: 10.1177/0022034511398868. Epub 2011 Mar 8.
The molecular mechanisms that underlie dental fluorosis are poorly understood. The retention of enamel proteins hallmarking fluorotic enamel may result from impaired hydrolysis and/or removal of enamel proteins. Previous studies have suggested that partial inhibition of Mmp20 expression is involved in the etiology of dental fluorosis. Here we ask if mice expressing only one functional Mmp20 allele are more susceptible to fluorosis. We demonstrate that Mmp20 (+/-) mice express approximately half the amount of MMP20 as do wild-type mice. The Mmp20 heterozygous mice have normal-appearing enamel, with Vickers microhardness values similar to those of wild-type control enamel. Therefore, reduced MMP20 expression is not solely responsible for dental fluorosis. With 50-ppm-fluoride (F(-)) treatment ad libitum, the Mmp20 (+/-) mice had F(-) tissue levels similar to those of Mmp20 (+/+) mice. No significant difference in enamel hardness was observed between the F(-)-treated heterozygous and wild-type mice. Interestingly, we did find a small but significant difference in quantitative fluorescence between these two groups, which may be attributable to slightly higher protein content in the Mmp20 (+/-) mouse enamel. We conclude that MMP20 plays a nominal role in dental enamel fluorosis.
氟斑牙的分子机制尚未完全阐明。氟斑牙釉质中标志性的釉质蛋白的保留可能是由于釉质蛋白的水解和/或去除受损所致。先前的研究表明,Mmp20 表达的部分抑制参与了氟斑牙的病因。在这里,我们想知道只表达一个功能正常的 Mmp20 等位基因的小鼠是否更容易患氟斑牙。我们证明 Mmp20( +/-) 小鼠的 MMP20 表达量约为野生型小鼠的一半。Mmp20 杂合子小鼠的釉质外观正常,维氏显微硬度值与野生型对照釉质相似。因此,MMP20 表达减少并不是氟斑牙的唯一原因。在自由饮用 50ppm 氟化物(F(-))的情况下,Mmp20( +/-) 小鼠的 F(-)组织水平与 Mmp20( +/+) 小鼠相似。在 F(-)处理的杂合子和野生型小鼠之间,釉质硬度没有观察到显著差异。有趣的是,我们确实发现这两组之间在定量荧光方面存在微小但显著的差异,这可能归因于 Mmp20( +/-) 小鼠釉质中蛋白含量略高。我们得出结论,MMP20 在牙齿釉质氟斑牙中发挥着微不足道的作用。