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首页> 外文期刊>Calcified tissue international. >The three-dimensional morphometry and cell-cell communication of the osteocyte network in chick and mouse embryonic calvaria.
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The three-dimensional morphometry and cell-cell communication of the osteocyte network in chick and mouse embryonic calvaria.

机译:鸡和小鼠胚胎颅骨中骨细胞网络的三维形态学和细胞间通讯。

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摘要

The study of osteocytes has progressed in chicks. We examined whether chick osteocyte data can be applied to other species. We used mice for comparison because they are common clinical tools in biomedical research and useful for future study. We analyzed the three-dimensional (3D) osteocyte network and gap junctional intercellular communication (GJIC) in living embryonic calvaria for the anatomical features. Embryonic parietal bones were stained with fluorescently labeled phalloidin and observed using confocal laser scanning microscopy. GJIC between osteocytes in chick and mouse parietal bone was assessed using fluorescence recovery after photobleaching (FRAP). The values for one chick and mouse osteocyte, respectively, were calculated as follows: cell processes 1,131 +/- 139 mum, 2,668 +/- 596 mum; surface area 1,128 +/- 358 mum(2), 2,654 +/- 659 mum(2); and cell volume 455 +/- 90 mum(3), 1,328 +/- 210 mum(3). The density of 3D osteocyte processes in the bone matrix was not significantly different. FRAP analysis showed dye coupling among osteocytes in chick and mouse bone. The fluorescence intensity recovered to 49.0 +/- 2.4% in chicks and 39.9 +/- 2.4% in mice after 5 minutes. Fluorescence recovery was similar within 4 minutes. The difference in osteocyte size between the two species might have affected their functions. Osteocyte processes in the two species may sense similarly changes in the exterior environment. We successfully conducted morphological and functional analyses of the osteocyte network in chicks and mice. The size of the osteocytes in bone differed between the two species.
机译:雏鸡对骨细胞的研究已有进展。我们检查了鸡骨细胞数据是否可以应用于其他物种。我们使用小鼠进行比较,因为它们是生物医学研究中常用的临床工具,并且对将来的研究很有用。我们分析了活体胚胎颅中的三维(3D)骨细胞网络和间隙连接细胞间通讯(GJIC)的解剖特征。胚胎顶骨用荧光标记的鬼笔环肽染色,并用共聚焦激光扫描显微镜观察。使用光漂白后的荧光恢复(FRAP)评估小鸡和小鼠顶骨中骨细胞之间的GJIC。分别计算一只小鸡和小鼠骨细胞的值如下:细胞过程:1,131 +/- 139毫米,2,668 +/- 596毫米;表面积1,128 +/- 358毫米(2),2,654 +/- 659毫米(2);和细胞体积455 +/- 90 mum(3),1,328 +/- 210 mum(3)。骨基质中3D骨细胞过程的密度没有显着差异。 FRAP分析显示小鸡和小鼠骨骼中骨细胞之间的染料偶联。 5分钟后,小鸡的荧光强度恢复到49.0 +/- 2.4%,小鼠的荧光强度恢复到39.9 +/- 2.4%。在4分钟内荧光恢复相似。两种物种之间骨细胞大小的差异可能影响了它们的功能。两个物种中的骨细胞过程可能会感觉到外部环境的类似变化。我们成功地对小鸡和小鼠的骨细胞网络进行了形态和功能分析。两种物种的骨中骨细胞的大小不同。

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