Advanced Research Center, School of Life Dentistry at Niigata, The Nippon Dental University, 1-8 Hamaura-cho, Niigata 951-8580, Japan.
Cell Tissue Res. 2012 Feb;347(2):369-81. doi: 10.1007/s00441-011-1305-4.
This is the first detailed report about the collar enamel of the teeth of Polypterus senegalus. We have examined the fine structure of the collar enamel and enamel organ of Polypterus during amelogenesis by light and transmission electron microscopy. An immunohistochemical analysis with an antibody against bovine amelogenin, an antiserum against porcine amelogenin and region-specific antibodies or antiserum against the C-terminus, middle region and N-terminus of porcine amelogenin has also been performed to examine the collar enamel matrix present in these teeth. Their ameloblasts contain fully developed Golgi apparatus, rough endoplasmic reticulum and secretory granules. During collar enamel formation, an amorphous fine enamel matrix containing no collagen fibrils is found between the dentin and ameloblast layers. In non-demineralized sections, the collar enamel (500 nm to 1 μm thick) is distinguishable from dentin, because of its higher density and differences in the arrangement of its crystals. The fine structural features of collar enamel in Polypterus are similar to those of tooth enamel in Lepisosteus (gars), coelacanths, lungfish and amphibians. The enamel matrix shows intense immunoreactivity to the antibody and antiserum against mammalian amelogenins and to the middleregion- and C-terminal-specific anti-amelogenin antibodies. These findings suggest that the proteins in the enamel of Polypterus contain domains that closely resemble those of bovine and porcine amelogenins. The enamel matrix, which exhibits positive immunoreactivity to mammalian amelogenins, extends to the cap enameloid surface, implying that amelogenin-like proteins are secreted by ameloblasts as a thin matrix layer that covers the cap enameloid after enameloid maturation.
这是第一篇关于 Polypterus senegalus 牙齿领圈釉质的详细报告。我们通过光镜和透射电镜检查了 Polypterus 在釉质发生过程中领圈釉质和釉质器官的精细结构。我们还使用针对牛釉原蛋白的抗体、针对猪釉原蛋白的抗血清以及针对猪釉原蛋白 C 端、中端和 N 端的特异性抗体或抗血清进行了免疫组织化学分析,以检查这些牙齿中存在的领圈釉质基质。它们的成釉细胞含有完全发育的高尔基体、粗面内质网和分泌颗粒。在领圈釉质形成过程中,在牙本质和成釉细胞层之间发现了一种无胶原纤维的无定形细釉质基质。在非脱矿切片中,由于密度较高且晶体排列方式不同,领圈釉质(500nm 至 1μm 厚)与牙本质区分开来。Polypterus 领圈釉质的精细结构特征与 Lepisosteus(雀鳝)、腔棘鱼、肺鱼和两栖动物的牙齿釉质相似。釉质基质对针对哺乳动物釉原蛋白的抗体和抗血清以及针对中区域和 C 端特异性抗釉原蛋白抗体具有强烈的免疫反应性。这些发现表明,Polypterus 釉质中的蛋白质含有与牛和猪釉原蛋白非常相似的结构域。对哺乳动物釉原蛋白表现出阳性免疫反应的釉质基质延伸到帽状釉质样表面,这意味着釉原蛋白样蛋白作为覆盖釉质样成熟后帽状釉质样的薄基质层由成釉细胞分泌。