Department of Dental Medicine, Karolinska Institutet, Huddinge, Sweden.
Department of Histology and Embryology, Faculty of Medicine, Masaryk University, Brno, Czech Republic.
J Dent Res. 2015 Jul;94(7):945-54. doi: 10.1177/0022034515580796. Epub 2015 Apr 2.
In organized tissues, the precise geometry and the overall shape are critical for the specialized functions that the cells carry out. Odontoblasts are major matrix-producing cells of the tooth and have also been suggested to participate in sensory transmission. However, refined morphologic data on these important cells are limited, which hampers the analysis and understanding of their cellular functions. We took advantage of fluorescent color-coding genetic tracing to visualize and reconstruct in 3 dimensions single odontoblasts, pulp cells, and their assemblages. Our results show distinct structural features and compartments of odontoblasts at different stages of maturation, with regard to overall cellular shape, formation of the main process, orientation, and matrix deposition. We demonstrate previously unanticipated contacts between the processes of pulp cells and odontoblasts. All reported data are related to mouse incisor tooth. We also show that odontoblasts express TRPM5 and Piezo2 ion channels. Piezo2 is expressed ubiquitously, while TRPM5 is asymmetrically distributed with distinct localization to regions proximal to and within odontoblast processes.
在有组织的组织中,精确的几何形状和整体形状对于细胞执行的专门功能至关重要。成牙本质细胞是牙齿的主要基质产生细胞,也被认为参与感觉传递。然而,这些重要细胞的精细形态数据有限,这阻碍了对其细胞功能的分析和理解。我们利用荧光颜色编码遗传追踪,可视化和重建 3 维单个成牙本质细胞、牙髓细胞及其集合体。我们的结果显示,在不同成熟阶段的成牙本质细胞具有不同的整体细胞形状、主过程形成、取向和基质沉积的结构特征和隔室。我们证明了牙髓细胞和成牙本质细胞之间以前未预料到的接触。所有报告的数据都与小鼠切牙有关。我们还表明,成牙本质细胞表达 TRPM5 和 Piezo2 离子通道。Piezo2 广泛表达,而 TRPM5 则呈不对称分布,其定位明显靠近和位于成牙本质细胞过程内的区域。