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Inflammatory Cytokines Prime Adipose Tissue Mesenchymal Stem Cells to Enhance Malignancy of MCF-7 Breast Cancer Cells via Transforming Growth Factor-beta 1

机译:炎性细胞因子主要脂肪组织间充质干细胞通过转化生长因子-beta 1增强MCF-7乳腺癌细胞的恶性程度。

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摘要

Mesenchymal stem cells from human adipose tissue (hASCs) are proposed as suitable tools for soft tissue engineering and reconstruction. Although it is known that hASCs have the ability to home to sites of inflammation and tumor niche, the role of inflammatory cytokines in the hASCs-affected tumor development is not understood. We found that interferon-gamma (IFN-gamma) and/or tumor necrosis factor-alpha (TNF-alpha) prime hASCs to produce soluble factors which enhance MCF-7 cell line malignancy in vitro. IFN-gamma and/or TNF-alpha-primed hASCs produced conditioned media (CM) which induced epithelial to mesenchymal transition (EMT) of MCF-7 cells by reducing E-Cadherin and increasing Vimentin expression. Induced EMT was accompanied by increased invasion, migration, and urokinase type-plasminogen activator (uPA) expression in MCF-7 cells. These effects were mediated by increased expression of transforming growth factor-beta 1(TGF-beta 1) in cytokines-primed hASCs, since inhibition of type I TGF-beta 1 receptor on MCF-7 cells and neutralization of TGF-beta 1 disabled the CM from primed hASCs to increase EMT, cell migration, and uPA expression in MCF-7 cells. Obtained data suggested that IFN-gamma and/or TNF-alpha primed hASCs might enhance the malignancy of MCF-7 cell line by inducing EMT, cell motility and uPA expression in these cells via TGF-beta 1-Smad3 signalization, with potentially important implications in breast cancer progression.
机译:有人提出将人脂肪组织(hASCs)的间充质干细胞作为软组织工程和重建的合适工具。尽管已知hASC具有归巢于炎症和肿瘤小生境的能力,但是尚不清楚炎症细胞因子在hASCs影响的肿瘤发展中的作用。我们发现干扰素-γ(IFN-γ)和/或肿瘤坏死因子-α(TNF-alpha)最初的hASCs产生可增强MCF-7细胞系体外恶性肿瘤的可溶性因子。 IFN-γ和/或TNF-α诱导的hASCs产生条件培养基(CM),该培养基通过减少E-钙黏着蛋白和增加波形蛋白的表达来诱导MCF-7细胞上皮向间质转化(EMT)。诱导的EMT伴随着MCF-7细胞中侵袭,迁移和尿激酶型纤溶酶原激活物(uPA)表达的增加。这些作用是由细胞因子引发的hASC中转化生长因子-β1(TGF-β1)表达的增加介导的,因为对MCF-7细胞的I型TGF-β1受体的抑制作用和TGF-β1的中和作用抑制了该作用。引发的hASC中的CM可增加MCF-7细胞中的EMT,细胞迁移和uPA表达。获得的数据表明,IFN-γ和/或TNF-α介导的hASCs可能通过TGF-beta 1-Smad3信号传导诱导这些细胞中的EMT,细胞运动性和uPA表达,从而增强MCF-7细胞系的恶性程度。在乳腺癌进展中。

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