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培养条件如何调节人雌激素敏感乳腺细胞系(MCF-7)的形态功能分化。

How culture conditions modulate the morphofunctional differentiation of the human estradiol-sensitive mammary cell line (MCF-7).

作者信息

Pourreau-Schneider N, Martin P M, Charpin C, Jacquemier J, Saez S, Nandi S

出版信息

J Steroid Biochem. 1984 Jan;20(1):407-15. doi: 10.1016/0022-4731(84)90243-7.

Abstract

The MCF-7 cell line grown on plastic surfaces is widely accepted as a model for hormone sensitivity in molecular biology. However, in vitro results concerning estrogen sensitivity remain controversial. In search of culture conditions most closely simulating the in vivo microenvironment we cultured MCF-7 cells on diverse substrates and in suspension culture. The different factors of the contact environment: (A) influence of diffusive medium, (B) influence of cell to cell contacts, and (C) influence of cell to substrate contacts were considered. Using morphological criteria:phase contrast microscopy, scanning and transmission electron microscopy we observed MCF-7 morphofunctional differentiation under the different culture conditions. Plastic, corneal endothelial cell extracellular matrix, and attached collagen gels imposed a planar medium-aggregate interface. The impermeability of the free surface and the intense basal tension antagonized epithelial polarization. Only at post-confluence did domes and clusters appear above the monolayer. On floating collagen gels and in suspension culture the cells established intimate cell-cell contacts over large surfaces and reconstituted tissular architecture. Three-dimensional growth conditions which approach the in vivo contact environment of epithelial cells should be used instead of the traditional monolayer cultures for assessing hormonal and pharmacological responses of human breast carcinomas.

摘要

在塑料表面生长的MCF-7细胞系在分子生物学中被广泛用作激素敏感性模型。然而,关于雌激素敏感性的体外研究结果仍存在争议。为了寻找最接近体内微环境的培养条件,我们在不同底物上和悬浮培养中培养了MCF-7细胞。考虑了接触环境的不同因素:(A) 扩散介质的影响,(B) 细胞间接触的影响,以及 (C) 细胞与底物接触的影响。使用形态学标准:相差显微镜、扫描和透射电子显微镜,我们观察了不同培养条件下MCF-7的形态功能分化。塑料、角膜内皮细胞细胞外基质和附着的胶原凝胶形成了平面的介质-聚集体界面。自由表面的不渗透性和强烈的基底张力阻碍了上皮极化。只有在汇合后,单层上方才会出现穹顶和簇。在漂浮的胶原凝胶上和悬浮培养中,细胞在大表面上建立了紧密的细胞间接触,并重建了组织架构。评估人乳腺癌的激素和药理反应时,应使用接近上皮细胞体内接触环境的三维生长条件,而不是传统的单层培养。

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