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A novel three-dimensional microfluidic platform for on chip multicellular tumor spheroid formation and culture

机译:用于芯片多细胞肿瘤球体形成和培养的新型三维微流控平台

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摘要

The formation of three-dimensional (3D) multicellular cell spheroids such as microspheres and embryoid bodies has recently gained much attention as a useful cell culture technique, but few studies have investigated the suitability of glass for spheroids formation and culture. In this work, we present a novel three-dimensional microfluidic device made of poly(dimethylsiloxane) (PDMS) and glass for the easy and rapid synthesis and culture of tumor spheroid. The cell culture unit is composed of an array of microwells on the bottom of a glass plate, bigger micro-wells and elastomeric microchannels on the top of a PDMS plate. Cell suspension can be easily introduced into the cell culture unit and exchange with the external liquid environment by the microfluidic channels. A single tumor spheroid can be formed and cultured in each glass cell culture chamber, the surface of which was modified with poly(vinyl alcohol) to render it to be resistant to cell adhesion. As the cell culture medium could be replaced, spheroids of the human breast cancer (MCF-7) cells were cultured on the chip for 3 days, reaching the diameters of about 150 μm. Furthermore, the MCF-7 cells were successfully cultured on the chip in 2D and 3D culture modes. Results have shown that glass is well suitable for multi-cellular tumor spheroids culture. The established platform provides a convenient and rapid method for tumor spheroid culture, which is also adaptable for anticancer drug screening and fundamental biomedical research in cell biology.
机译:作为一种有用的细胞培养技术,三维(3D)多细胞球体的形成(如微球和类胚体)最近受到了广泛的关注,但很少有研究研究玻璃对球体形成和培养的适用性。在这项工作中,我们提出了一种由聚二甲基硅氧烷(PDMS)和玻璃制成的新型三维微流控装置,可轻松快速地合成和培养肿瘤球体。细胞培养单元由玻璃板底部的微孔阵列,PDMS板顶部的较大微孔和弹性微通道组成。细胞悬浮液可以很容易地引入细胞培养单元中,并通过微流体通道与外部液体环境交换。可以在每个玻璃细胞培养室中形成并培养单个肿瘤球体,并用聚乙烯醇修饰其表面以使其对细胞粘附具有抵抗力。由于可以替换细胞培养基,因此将人乳腺癌(MCF-7)细胞的球状体在芯片上培养3天,直径达到约150μm。此外,MCF-7细胞已成功以2D和3D培养模式在芯片上培养。结果表明,玻璃非常适合于多细胞肿瘤球体的培养。建立的平台为肿瘤球的培养提供了方便快捷的方法,也适用于细胞癌的抗癌药物筛选和基础生物医学研究。

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