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胶原重组在三维培养模型中对乳腺上皮形态发生的作用。

The role of collagen reorganization on mammary epithelial morphogenesis in a 3D culture model.

机构信息

Department of Anatomy & Cellular Biology, Tufts University School of Medicine, 136 Harrison Ave., Room J318/J327, Boston, MA 02111, USA.

出版信息

Biomaterials. 2010 May;31(13):3622-30. doi: 10.1016/j.biomaterials.2010.01.077. Epub 2010 Feb 9.

DOI:10.1016/j.biomaterials.2010.01.077
PMID:20149444
Abstract

Collagen-based three-dimensional (3D) in vitro models that recapitulate the structural and functional context of normal and malignant tissues provide a relevant surrogate to animal models in the study of developmental and carcinogenic processes. Human breast epithelial MCF10A cells embedded in a collagen gel formed both acinar and tubular structures only when the gel was detached (floating) from the cell culture plate's well, and allowed to be contracted by the cells. Epithelial phenotype depended upon the time and the location within the gel, as ducts formed exclusively on the upper layer of the gel while ductal branching occurred earlier in the central area of the gel, and gradually progressed toward the periphery. The addition of fibroblasts accelerated tubulogenesis. MCF10A cells facilitated the organization of thick collagen fibers packed into large bundles at the tip of the ducts and parallel to the direction of ductal elongation. In gels that were not detached from the well's wall, MCF10A cells organized in monolayer and collagen fibers were aligned along the axis of outstretched sprouts stemming from those cellular aggregates. Partial gel release induced uniaxial tubulogenesis associated with orderly aligned collagen fibers. These results suggest that proper collagen organization is necessary for epithelial morphogenesis to occur, and that biomechanical interactions between fibers and cells mediated duct formation, elongation and branching.

摘要

基于胶原蛋白的三维(3D)体外模型可以重现正常和恶性组织的结构和功能背景,为研究发育和致癌过程中的动物模型提供了相关的替代方法。将人乳腺上皮 MCF10A 细胞嵌入胶原凝胶中,只有当凝胶从细胞培养板的孔中脱离(漂浮)并允许细胞收缩时,才能形成腺泡和管状结构。上皮表型取决于凝胶中的时间和位置,因为导管仅在凝胶的上层形成,而导管分支则更早地发生在凝胶的中央区域,并逐渐向边缘推进。成纤维细胞的加入加速了管状结构的形成。MCF10A 细胞促进了厚胶原纤维的组织,这些纤维在导管的尖端被包装成大束,并与导管伸长的方向平行。在没有从孔壁脱离的凝胶中,MCF10A 细胞在单层中组织,胶原纤维沿从这些细胞聚集体延伸的芽的伸展轴排列。部分凝胶释放诱导了与有序排列的胶原纤维相关的单轴管状形成。这些结果表明,适当的胶原蛋白组织对于上皮形态发生的发生是必要的,并且纤维和细胞之间的生物力学相互作用介导了导管的形成、伸长和分支。

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