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Vitamin D3 constrains estrogen’s effects and influences mammary epithelial organization in 3D cultures

机译:维生素D3限制雌激素的作用并影响3D文化中的乳腺上皮组织

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Vitamin D3 (vitD3) and its active metabolite, calcitriol (1,25-(OH)sub2/subDsub3/sub), affect multiple tissue types by interacting with the vitamin D receptor (VDR). Although vitD3 deficiency has been correlated with increased incidence of breast cancer and less favorable outcomes, randomized clinical trials have yet to provide conclusive evidence on the efficacy of vitD3 in preventing or treating breast cancer. Additionally, experimental studies are needed to assess the biological plausibility of these outcomes. The mammary gland of VDR KO mice shows a florid phenotype revealing alterations of developmental processes that are largely regulated by mammotropic hormones. However, most research conducted on vitD3's effects used 2D cell cultures and supra-physiological doses of vitD3, conditions that spare the microenvironment in which morphogenesis takes place. We investigated the role of vitD3 in mammary epithelial morphogenesis using two 3D culture models. VitD3 interfered with estrogen's actions on T47D human breast cancer cells in 3D differently at different doses, and recapitulated what is observed in vivo. Also, vitD3 can act autonomously and affected the organization of estrogen-insensitive MCF10A cells in 3D collagen matrix by influencing collagen fiber organization. Thus, vitD3 modulates mammary tissue organization independent of its effects on cell proliferation.
机译:维生素D3(vitD3)及其活性代谢产物骨化三醇(1,25-(OH) 2 D 3 )通过与维生素D受体相互作用而影响多种组织类型( VDR)。尽管vitD3缺乏与乳腺癌的发病率增加和不良结局有关,但随机临床试验尚未提供关于vitD3预防或治疗乳腺癌的功效的确凿证据。另外,需要进行实验研究来评估这些结果的生物学合理性。 VDR KO小鼠的乳腺表现出一种花状表型,揭示了发育过程的变化,这些变化在很大程度上受乳腺激素的调节。但是,有关vitD3作用的大多数研究都使用2D细胞培养和vitD3的超生理剂量,这些条件可避免发生形态发生的微环境。我们使用两个3D培养模型研究了vitD3在乳腺上皮形态发生中的作用。 VitD3以不同的剂量以不同的方式以不同的3D方式干扰雌激素对T47D人乳腺癌细胞的作用,并概括了体内观察到的结果。此外,vitD3可以自主发挥作用,并通过影响胶原纤维的组织来影响3D胶原蛋白基质中对雌激素不敏感的MCF10A细胞的组织。因此,vitD3调节乳腺组织的组织独立于其对细胞增殖的影响。

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