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Non-invasive measurement of cell viability in 3-dimensional cell culture construct

机译:三维细胞培养构建体中细胞活力的非侵入性测量

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In this work, a non-invasive measurement technique for the quantitative determination of cell viability in a three-dimensional (3D) cell culture construct is proposed. This technique is based on on-site electrical impedance measurement. A microfluidic chip with a 3D culture chamber is fabricated to demonstrate this technique. In vitro 3D cell culture has been interpreted for faithfully representation of the in vivo cellular responses in 3D cell culture construct is normally time-consuming and labor-intensive. In this study, the microfluidic chip consists of a culture chamber, in which a pair of vertical electrodes at its opposite sidewalls was embedded, and a fluidic channel for drug perfusion. Cancer cells encapsulated in agarose gel were loaded into the culture chamber to perform 3D cell culture under the perfusion of culture medium and anti-cancer drug in different concentrations (6, 12, 18, and 24 µg/ml) for 2 days. Since higher drug concentration led to more cell damage or death, the total impedance magnitude of the culture construct was shown to be reasonably proportional to the anti-cancer drug concentration. Moreover, cell proliferation can be also monitored using this technique. The proposed measurement method can determine cell viability without affecting the cellular behaviors during culture. It has a high potential to develop a fast and easy measurement compared with the conventional cellular analysis techniques.
机译:在这项工作中,提出了一种用于定量测定三维(3D)细胞培养构建体中细胞活力的非侵入性测量技术。该技术基于现场电阻测量。制造具有3D培养室的微流体芯片以证明这种技术。体外3D细胞培养已经被解释为忠实地表示3D细胞培养构建体中的体内细胞反应通常是耗时和劳动密集型的。在该研究中,微流体芯片由培养室组成,其中嵌入其相对侧壁处的一对垂直电极,并且用于药物灌注的流体通道。将在琼脂糖凝胶中包封的癌细胞加载到培养室中,以在不同浓度(6,12,18和24μg/ ml)的培养基和抗癌药中的灌注下进行3D细胞培养2天。由于较高的药物浓度导致更多的细胞损伤或死亡,因此显示培养构建体的总阻抗幅度与抗癌药物浓度合理成比例。此外,还可以使用该技术监测细胞增殖。所提出的测量方法可以确定细胞活力而不影响培养过程中的细胞行为。与传统的蜂窝分析技术相比,它具有高潜力,可以快速和易于测量。

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