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Three-Dimensional Analysis of Cell Division Orientation in Epidermal Basal Layer Using Intravital Two-Photon Microscopy

机译:活体内双光子显微镜对表皮基底层细胞分裂方向的三维分析

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摘要

Epidermal structures are different among body sites, and proliferative keratinocytes in the epidermis play an important role in the maintenance of the epidermal structures. In recent years, intravital skin imaging has been used in mammalian skin research for the investigation of cell behaviors, but most of these experiments were performed with rodent ears. Here, we established a non-invasive intravital imaging approach for dorsal, ear, hind paw, or tail skin using R26H2BEGFP hairless mice. Using four-dimensional (x, y, z, and time) imaging, we successfully visualized mitotic cell division in epidermal basal cells. A comparison of cell division orientation relative to the basement membrane in each body site revealed that most divisions in dorsal and ear epidermis occurred in parallel, whereas the cell divisions in hind paw and tail epidermis occurred both in parallel and oblique orientations. Based on the quantitative analysis of the four-dimensional images, we showed that the epidermal thickness correlated with the basal cell density and the rate of the oblique divisions.
机译:表皮结构在身体部位之间是不同的,表皮中的增殖性角质形成细胞在表皮结构的维持中起重要作用。近年来,在哺乳动物皮肤研究中已经使用了活体皮肤成像技术来研究细胞行为,但是其中大多数实验都是用啮齿动物的耳朵进行的。在这里,我们使用R26H2BEGFP无毛小鼠建立了背,耳,后爪或尾巴皮肤的无创活体成像方法。使用三维(x,y,z和时间)成像,我们成功地观察了表皮基底细胞中的有丝分裂细胞分裂。在每个身体部位相对于基底膜的细胞分裂取向的比较显示,背侧和耳表皮中的大多数分裂是平行发生的,而后爪和尾部表皮中的细胞分裂则以平行和倾斜取向发生。在对三维图像进行定量分析的基础上,我们发现表皮厚度与基底细胞密度和斜切率相关。

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