McKee M D, Aoba T, Moreno E C
Department of Physical Chemistry, Forsyth Dental Center, Boston, Massachusetts.
Anat Rec. 1991 May;230(1):97-113. doi: 10.1002/ar.1092300110.
In recent years, the dentition of the pig has been increasingly used as a model for the study of amelogenesis. Indeed, much of our current knowledge on enamel formation derives from biochemical and physicochemical analyses of the organic and inorganic components, respectively, of porcine enamel. As an extension of this previous work, and as the first step in our attempt to correlate known enamel matrix and mineral changes with adjacent enamel organ morphology, the present study was undertaken to provide a description of the morphological events occurring in the enamel organ during porcine amelogenesis. Two-week-old miniature swine (minipigs) were fixed by vascular perfusion with glutaraldehyde, the deciduous teeth present at this age were embedded in Epon resin and sectioned, and the cells of the enamel organ at each of the various developmental stages of amelogenesis were examined by light and transmission electron microscopy. In many respects, the morphology of the porcine enamel organ was similar to that previously described in other mammalian species. On the other hand, several particularities were noted and these are discussed in the context of available data correlating cell ultrastructure with putative function during enamel formation.
近年来,猪的牙列越来越多地被用作釉质形成研究的模型。实际上,我们目前关于牙釉质形成的许多知识分别来自对猪牙釉质有机和无机成分的生化及物理化学分析。作为此前这项工作的延伸,也是我们尝试将已知的牙釉质基质和矿物质变化与相邻牙釉质器官形态相关联的第一步,本研究旨在描述猪釉质形成过程中牙釉质器官发生的形态学事件。两周大的小型猪通过血管灌注戊二醛进行固定,将这个年龄段的乳牙嵌入环氧树脂中并切片,然后通过光学显微镜和透射电子显微镜检查釉质形成各个发育阶段牙釉质器官的细胞。在许多方面,猪牙釉质器官的形态与先前在其他哺乳动物物种中描述的相似。另一方面,我们注意到了几个特殊之处,并结合现有数据在牙釉质形成过程中细胞超微结构与假定功能之间的关联背景下进行了讨论。