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首页> 外文期刊>Biomaterials >The enhancement of cancer stem cell properties of MCF-7 cells in 3D collagen scaffolds for modeling of cancer and anti-cancer drugs
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The enhancement of cancer stem cell properties of MCF-7 cells in 3D collagen scaffolds for modeling of cancer and anti-cancer drugs

机译:增强3D胶原蛋白支架中MCF-7细胞的癌症干细胞特性以建模癌症和抗癌药物

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Three-dimensional (3D) culture could partially simulate in vivo conditions. In this work, we developed a 3D collagen scaffold to investigate cellular properties of MCF-7 cells. The porous scaffolds not only induced the diversification of cell morphologies but also extended cell proliferation. The expression of pro-angiogenic growth factors and the transcriptions of matrix metalloproteinases (MMPs) were significantly increased in cells cultured in 3D collagen scaffolds. In addition, 3D collagen scaffolds could generate a cell population with the properties of cancer stem cells (CSCs). The upregulation of EMT markers and the downregulation of the epithelial cell marker were observed in cells cultured in collagen scaffolds. The expression of stem cell markers, including OCT4A and SOX2, and breast cancer stem cell signatures, including SOX4, JAG1 and CD49F, was significantly unregulated in 3D collagen scaffolds. The proportion of cells with CSC-like CD44 +/CD24 -/low phenotype was notably increased. High-level expression of CSC-associated properties of MCF-7 cells cultured in 3D was further confirmed by high tumorigenicity in vivo. Moreover, xenografts with 3D cells formed larger tumors. The properties of MCF-7 cells in 3D may have partially simulated their in vivo behaviors. Thus, 3D collagen scaffolds might provide a useful platform for anti-cancer therapeutics and CSC research.
机译:三维(3D)培养可以部分模拟体内条件。在这项工作中,我们开发了3D胶原蛋白支架来研究MCF-7细胞的细胞特性。多孔支架不仅诱导细胞形态的多样化,而且延长了细胞的增殖。在3D胶原蛋白支架中培养的细胞中,促血管生成生长因子的表达和基质金属蛋白酶(MMP)的转录显着增加。另外,3D胶原蛋白支架可以产生具有癌症干细胞(CSCs)特性的细胞群。在胶原蛋白支架中培养的细胞中观察到EMT标志物的上调和上皮细胞标志物的下调。在3D胶原蛋白支架中,包括OCT4A和SOX2在内的干细胞标志物的表达以及包括SOX4,JAG1和CD49F在内的乳腺癌干细胞标志物均显着失调。具有CSC样CD44 + / CD24-/低表型的细胞比例显着增加。通过体内高致瘤性进一步证实了在3D模式下培养的MCF-7细胞的CSC相关特性的高水平表达。此外,具有3D细胞的异种移植物形成更大的肿瘤。 3D中的MCF-7细胞的特性可能部分模拟了它们的体内行为。因此,3D胶原蛋白支架可能为抗癌治疗和CSC研究提供有用的平台。

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