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Coherent angular motion in the establishment of multicellular architecture of glandular tissues

机译:相干角运动在腺组织多细胞结构的建立中

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Glandular tissues form ducts (tubes) and acini (spheres) in multicellular organisms. This process is best demonstrated in the organization of the ductal tree of the mammary gland and in 3D models of morphogenesis in culture. Here, we asked a fundamental question: How do single adult epithelial cells generate polarized acini when placed in a surrogate basement membrane 3D gel? Using human breast epithelial cells from either reduction mammoplasty or non-malignant breast cell lines, we observed a unique cellular movement where single cells undergo multiple rotations and then maintain it cohesively as they divide to assemble into acini. This coherent angular motion (CAMo) was observed in both primary cells and breast cell lines. If CAMo was disrupted, the final geometry was not a sphere. The malignant counterparts of the human breast cell lines in 3D were randomly motile, did not display CAMo, and did not form spheres. Upon "phenotypic reversion" of malignant cells, both CAMo and spherical architecture were restored. We show that cell-cell adhesion and tissue polarity are essential for the formation of acini and link the functional relevance of CAMo to the establishment of spherical architecture rather than to multicellular aggregation or growth. We propose that CAMo is an integral step in the formation of the tissue architecture and that its disruption is involved in malignant transformation.
机译:腺组织在多细胞生物中形成导管(管)和腺泡(球体)。该过程在乳腺导管树的组织以及培养物中形态发生的3D模型中得到了最好的证明。在这里,我们问了一个基本问题:将单个成年上皮细胞置于替代性基底膜3D凝胶中时如何产生极化的腺泡?使用来自减少性乳房成形术或非恶性乳房细胞系的人乳房上皮细胞,我们观察到了独特的细胞运动,其中单个细胞经历多次旋转,然后在分裂成凝聚体时保持凝聚力。在原代细胞和乳腺细胞系中均观察到这种相干角运动(CAMo)。如果CAMo被破坏,则最终几何形状不是球体。人类乳房细胞系在3D模式下的恶性对应物随机运动,不显示CAMo,也不形成球体。在恶性细胞“表型逆转”后,CAMo和球形结构都得到了恢复。我们表明,细胞-细胞粘附和组织极性对于形成痤疮至关重要,并将CAMo的功能相关性与球形结构的建立联系起来,而不是与多细胞聚集或生长联系起来。我们建议CAMo是组织结构形成中不可或缺的步骤,其破坏涉及恶性转化。

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