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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Cellular dynamics of epithelial clefting during branching morphogenesis of the mouse submandibular gland.
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Cellular dynamics of epithelial clefting during branching morphogenesis of the mouse submandibular gland.

机译:小鼠颌下腺分支形态发生过程中上皮裂隙的细胞动力学。

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摘要

We cultured the rudimental submandibular gland (SMG) of mice with a non-cell-permeable fluorescent tracer, and observed cell behavior during epithelial branching morphogenesis using confocal time-lapse microscopy. We traced movements of individual cells as shadowgraph movies. Individual epithelial cells migrated dynamically but erratically. The epithelial cleft extended by wiggling and separated a cluster of cells into two buds during branching. We examined the ultrastructure of the clefts in SMG rudiments treated with the laminin peptide A5G77f, which induces epithelial clefting. A short cytoplasmic shelf with a core of microfilaments was found at the deep end of the cleft. We propose that epithelial clefting involves a dynamic movement of cells at the base of the cleft, and the formation of a shelf within a cleft cell. The shelf might form a matrix attachment point at the base of the cleft with a core of microfilaments driving cleft elongation.
机译:我们用非细胞渗透性荧光示踪剂培养了小鼠的下颌下腺(SMG),并使用共聚焦延时显微镜观察了上皮分支形态发生过程中的细胞行为。我们将单个单元的运动跟踪为阴影图电影。单个上皮细胞动态但不规则地迁移。上皮裂隙通过摆动而延伸,并在分支过程中将一簇细胞分成两个芽。我们检查了用层粘连蛋白肽A5G77f处理的SMG di裂中裂痕的超微结构,这会诱导上皮裂裂。在裂隙的深端发现了一个带有微丝核心的短细胞质架子。我们提出上皮性裂隙涉及在裂隙底部的细胞的动态运动,以及在裂隙细胞内架子的形成。架子可能会在裂痕的底部形成一个基质附着点,并带有驱动裂隙伸长的微丝核心。

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