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Screening of Additive Manufactured Scaffolds Designs for Triple Negative Breast Cancer 3D Cell Culture and Stem-Like Expansion

机译:用于三阴性乳腺癌3D细胞培养和茎干扩增的添加剂制造支架设计的筛选

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摘要

Breast cancer stem cells (BCSCs) are tumor-initiating cells responsible for metastasis and tumor reappearance, but their research is limited by the impossibility to cultivate them in a monolayer culture. Scaffolds are three-dimensional (3D) cell culture systems which avoid problems related with culturing BCSC. However, a standardized scaffold for enhancing a BCSC population is still an open issue. The main aim of this study is to establish a suitable poly (lactic acid) (PLA) scaffold which will produce BCSC enrichment, thus allowing them to be studied. Different 3D printing parameters were analyzed using Taguchi experimental design methods. Several PLA scaffold architectures were manufactured using a Fused Filament Fabrication (FFF) 3D printer. They were then evaluated by cell proliferation assay and the configurations with the highest growth rates were subjected to BCSC quantification by ALDH activity. The design SS1 (0.2 mm layer height, 70% infill density, Zigzag infill pattern, 45° infill direction, and 100% flow) obtained the highest proliferation rate and was capable of enhancing a ALDH+ cell population compared to 2D cell culture. In conclusion, the data obtained endorse the PLA porous scaffold as useful for culturing breast cancer cells in a microenvironment similar to in vivo and increasing the numbers of BCSCs.
机译:乳腺癌干细胞(BCSCs)是引起转移和肿瘤重现的肿瘤起始细胞,但其研究受到无法在单层培养物中培养的限制。支架是三维(3D)细胞培养系统,可避免与培养BCSC相关的问题。然而,用于增强BCSC人群的标准化支架仍是未解决的问题。这项研究的主要目的是建立一种合适的聚乳酸(PLA)支架,该支架将产生BCSC富集,因此可以对其进行研究。使用田口实验设计方法分析了不同的3D打印参数。使用熔融长丝制造(FFF)3D打印机制造了几种PLA支架结构。然后通过细胞增殖测定法对其进行评估,并通过ALDH活性对具有最高生长速率的构型进行BCSC定量。设计SS1(0.2毫米层高,70%填充密度,Z字形填充图案,45°填充方向和100%流量)获得了最高的增殖速率,与2D细胞培养相比,能够增强ALDH +细胞群体。总之,获得的数据支持PLA多孔支架可用于在类似于体内的微环境中培养乳腺癌细胞并增加BCSC的数量。

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