Department of Morphology, Piracicaba Dental School, University of Campinas-UNICAMP, Piracicaba, SP, Brazil.
Connect Tissue Res. 2011 Jun;52(3):212-7. doi: 10.3109/03008207.2010.511731. Epub 2010 Nov 30.
The formation of an ordered enamel organic extracellular matrix (EOECM) seems to be a crucial step for the proper formation of the enamel mineral phase. The ordered supramolecular structure of the EOECM in the secretory stage can be analyzed using polarizing microscopy, as it is strongly birefringent. Excessive fluoride (F) ingestion during tooth development can cause enamel fluorosis, leading to increased porosity in mature enamel. We analyzed the effects of F on the birefringence of the EOECM in the A/J, CBA, and DBA/2 strains of mice given 0, 11.25, and 45 ppm of fluoride in drinking water. In the CBA and DBA/2 strains, the 11.25 and 45 ppmF groups presented a significant decrease in optical retardation (OR) when compared with the respective 0 (CBA 11.25 ppmF p = 0.0056 and 45 ppmF p < 0.0001; DBA/2 11.25 and 45 ppmF p < 0.05). ORs in A/J 0 ppmF were significantly higher than in 45 (p < 0.0001). The enamel of the A/J strain was more severely affected by fluoride than it was in the other strains of mice and exhibited the lowest levels of fluoride in plasma, whereas its normal secretory enamel presented a significantly higher protein absorbance than it did in CBA and DBA mice (p = 0.0099 and p = 0.0025, respectively). The results showed that experimental fluorosis can alter the supramolecular organization of EOECM in the secretory stage of amelogenesis and that the susceptibility to dental fluorosis seems to be influenced by the inherent characteristics of the developing enamel.
有序釉质有机细胞外基质 (EOECM) 的形成似乎是釉质矿物相正常形成的关键步骤。在分泌阶段,使用偏光显微镜可以分析 EOECM 的有序超分子结构,因为它具有强烈的双折射性。牙齿发育过程中过量的氟化物(F)摄入会导致氟斑牙,导致成熟釉质的多孔性增加。我们分析了氟对 A/J、CBA 和 DBA/2 三种小鼠饮用水中 0、11.25 和 45ppm 氟化物作用下 EOECM 双折射的影响。在 CBA 和 DBA/2 两种品系中,与相应的 0ppmF 组相比,11.25 和 45ppmF 组的光延迟(OR)显著降低(CBA 11.25ppmF p = 0.0056 和 45ppmF p < 0.0001;DBA/2 11.25 和 45ppmF p < 0.05)。A/J 0ppmF 的 OR 明显高于 45ppmF(p < 0.0001)。与其他两种品系的小鼠相比,A/J 品系的釉质受氟化物的影响更为严重,血浆中的氟含量也最低,而其正常分泌釉质的蛋白质吸收率明显高于 CBA 和 DBA 小鼠(p = 0.0099 和 p = 0.0025)。结果表明,实验性氟斑牙可以改变釉质形成分泌阶段 EOECM 的超分子结构,而且对氟斑牙的易感性似乎受到发育中釉质固有特性的影响。