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Development of an osteoblast-based 3D continuous-perfusion microfluidic system for drug screening

机译:基于成骨细胞的3D连续灌注微流控系统的开发,用于药物筛选

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摘要

In this work, we demonstrated that biological cells could be cultured in a continuous-perfusion glass microchip system for drug screening. We used mouse Col1a1GFP MC-3T3 E1 osteoblastic cells, which have a marker gene system expressing green fluorescent protein (GFP) under the control of osteoblast-specific promoters. With our microchip-based cell culture system, we realized automated long-term monitoring of cells and sampling of the culture supernatant system for osteoblast differentiation assay using a small number of cells. The system successfully monitored cells for 10 days. Under the 3D microchannel condition, shear stress (0.07 dyne/cm2 at a flow rate of 0.2 μL/min) was applied to the cells and it enhanced the GFP expression and differentiation of the osteoblasts. Analysis of alkaline phosphatase (ALP), which is an enzyme marker of osteoblasts, supported the results of GFP expression. In the case of differentiation medium containing bone morphogenetic protein 2, we found that ALP activity in the culture supernatant was enhanced 10 times in the microchannel compared with the static condition in 48-well dishes. A combined system of a microchip and a cell-based sensor might allow us to monitor osteogenic differentiation easily, precisely, and noninvasively. Our system can be applied in high-throughput drug screening assay for discovering osteogenic compounds.
机译:在这项工作中,我们证明了可以在连续灌注玻璃微芯片系统中培养生物细胞进行药物筛选。我们使用了小鼠Col1a1GFP MC-3T3 E1成骨细胞,该细胞具有在成骨细胞特异性启动子控制下表达绿色荧光蛋白(GFP)的标记基因系统。借助基于微芯片的细胞培养系统,我们实现了对细胞的自动化长期监控,并使用少量细胞对培养上清液系统进行了成骨细胞分化检测。系统成功监控了细胞10天。在3D微通道条件下,向细胞施加剪切应力(0.07达因/ cm2 ,流速为0.2μL/ min),可增强GFP的表达和成骨细胞的分化。对成骨细胞酶标记碱性磷酸酶(ALP)的分析支持了GFP表达的结果。在含有骨形态发生蛋白2的分化培养基的情况下,我们发现与48孔培养皿中的静态条件相比,培养上清液在微通道中的ALP活性提高了10倍。微芯片和基于细胞的传感器的组合系统可能使我们能够轻松,准确且无创地监测成骨分化。我们的系统可用于高通量药物筛选测定中,以发现成骨化合物。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2008年第3期|825-832|共8页
  • 作者单位

    Department of Applied Chemistry Graduate School of Engineering The University of Tokyo 7-3-1 Hongo Bunkyo Tokyo 113-8656 Japan;

    Department of Applied Chemistry Graduate School of Engineering The University of Tokyo 7-3-1 Hongo Bunkyo Tokyo 113-8656 Japan;

    Division of Tissue Engineering The University of Tokyo Hospital 7-3-1 Hongo Bunkyo-ku Tokyo 113-8655 Japan;

    Center for NanoBio Integration The University of Tokyo 7-3-1 Hongo Bunkyo Tokyo 113-8656 Japan;

    Department of Applied Chemistry Graduate School of Engineering The University of Tokyo 7-3-1 Hongo Bunkyo Tokyo 113-8656 Japan;

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

    Bioassays; Cell systems; Microfluidics; Osteoblast; Shear stress; Differentiation;

    机译:生物测定;细胞系统;微流控;成骨细胞;剪切应力;分化;

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