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Fabrication of a microfluidic chip containing dam, weirs and gradient generator for studying cellular response to chemical modulation

机译:包含坝,堰和梯度发生器的微流控芯片的制造,用于研究细胞对化学调制的响应

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摘要

A microfluidic chip was designed and fabricated for studying cellular response to chemical modulation. The microfluidic network comprised an up-stream gradient-generating module and a down-stream cell culture module. The microchip was composed of a piece of glass plate and a covered PDMS film. By using a two-step wet etching method, the dam structure was fabricated on the inlet of the cell chamber facilitating cell positioning, and a series of weir structures were fabricated on the bottom of cell culture reservoirs facilitating cell seeding. This microfluidics exploited the advantage of lab-on-a-chip technology by integrating the generation of chemical concentration gradients and a series of cell operations including seeding, culture, stimulation and staining into a chip. Steady concentration gradients were generated by flowing two fluids in the network. Over time observation showed that the microchip was suitable for cell seeding and culture. The microchip described above was applied in studying the roles of As_2O_3 and buthionine sulfoximine (BSO) in mediating intracellular levels of reduced glutathione (GSH) and reactive oxygen species (ROS) in MCF-7 cells. MCF-7 cells showed dose dependent reaction to the chemical modulations. Upon the treatment with both As_2O_3 and BSO, GSH levels were down-regulated but ROS levels were up-regulated. As_2O_3 showed a stronger effect on ROS enhancement, while BSO was more effective on GSH depletion. The integrated microfluidic chip is able to perform multiparametric pharmacological profiling with easy operation, thus holds great potential for extrapolation to the cell based high-content drug screening.
机译:设计和制造了一种微流控芯片,用于研究细胞对化学调制的反应。微流体网络包括上游梯度产生模块和下游细胞培养模块。微芯片由一块玻璃板和一层覆盖的PDMS膜组成。通过两步湿法刻蚀,在细胞室的入口处构造坝结构以促进细胞定位,在细胞培养池的底部构造一系列堰结构以促进细胞播种。这种微流体通过将化学浓度梯度的生成和一系列细胞操作(包括播种,培养,刺激和染色)整合到芯片中,从而利用了芯片实验室技术的优势。通过使两种流体在网络中流动来生成稳定的浓度梯度。随着时间的推移,观察表明该微芯片适用于细胞播种和培养。上述微芯片用于研究As_2O_3和丁硫氨酸亚砜亚胺(BSO)在介导MCF-7细胞中还原型谷胱甘肽(GSH)和活性氧(ROS)的细胞内水平中的作用。 MCF-7细胞显示出对化学调节的剂量依赖性反应。 As_2O_3和BSO处理后,GSH水平下调,但ROS水平上调。 As_2O_3对ROS的增强作用更强,而BSO对GSH的消耗更有效。集成的微流控芯片能够执行简单的多参数药理学分析,因此具有很大的潜力可外推到基于细胞的高含量药物筛选中。

著录项

  • 来源
    《Materials science & engineering》 |2009年第3期|674-679|共6页
  • 作者单位

    Key Laboratory for Thin Film and Microfabrication Technology of Ministry of Education, National Key Laboratory of Micro/Nano Fabrication Technology, Research Institute of Micro/Nano Science and Technology, Shanghai Jiao Tong University, 200240 Shanghai, China Bioengineering Center, Improve Medical Instrument's Co., Ltd., 510370 Guangzhou, China;

    Department of Pathology, Dalian Medical University, 116044 Dalian, China;

    Bioengineering Center, Improve Medical Instrument's Co., Ltd., 510370 Guangzhou, China;

    Key Laboratory for Thin Film and Microfabrication Technology of Ministry of Education, National Key Laboratory of Micro/Nano Fabrication Technology, Research Institute of Micro/Nano Science and Technology, Shanghai Jiao Tong University, 200240 Shanghai, China;

    Department of Laboratory Medicine, Guangzhou First Municipal People's Hospital, Affiliated Hospital of Guangzhou Medical College, 510180 Guangzhou, China;

    Bioengineering Center, Improve Medical Instrument's Co., Ltd., 510370 Guangzhou, China Department of Laboratory Medicine, Guangzhou First Municipal People's Hospital, Affiliated Hospital of Guangzhou Medical College, 510180 Guangzhou, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microfluidic chip; chip fabrication; gradient concentration; cell;

    机译:微流控芯片芯片制造;梯度浓度细胞;

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