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Time-lapse imaging assay using the BioStation CT: A sensitive drug-screening method for three-dimensional cell culture

机译:使用BioStation CT的延时成像分析:一种用于三维细胞培养的灵敏药物筛选方法

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摘要

Three-dimensional (3D) cell culture is beneficial for physiological studies of tumor cells, due to its potential to deliver a high quantity of cell culture information that is representative of the cancer microenvironment and predictive of drug responses in vivo. Currently, gel-associated or matrix-associated 3D cell culture is comprised of intricate procedures that often result in experimental complexity. Therefore, we developed an innovative anti-cancer drug sensitivity screening technique for 3D cell culture on NanoCulture Plates (NCP) by employing the imaging device BioStation CT. Here, we showed that the human breast cancer cell lines BT474 and T47D form multicellular spheroids on NCP plates and compared their sensitivity to the anti-cancer drugs trastuzumab and paclitaxel using the BioStation CT. The anticancer drugs reduced spheroid migration velocity and suppressed spheroid fusion. In addition, primary cells derived from the human breast cancer tissues B58 and B61 grown on NCP plates also exhibited similar drug sensitivity. These results were in good agreement with the conventional assay method using ATP quantification. We confirmed the antitumor effects of the drugs on cells seeded in 96-well plates using the BioStation CT imaging technique. We expect this method to be useful in research for new antitumor agents and for drug sensitivity tests in individually-tailored cancer treatments.
机译:三维(3D)细胞培养物对肿瘤细胞的生理学研究非常有益,因为它具有传递大量细胞培养物信息的潜力,这些信息代表了癌症微环境并预测了体内药物反应。当前,与凝胶相关或与基质相关的3D细胞培养由复杂的程序组成,这些程序通常会导致实验复杂。因此,我们通过使用成像设备BioStation CT开发了一种创新的抗癌药物敏感性筛选技术,用于在NanoCulture Plates(NCP)上进行3D细胞培养。在这里,我们显示了人乳腺癌细胞BT474和T47D在NCP板上形成多细胞球体,并使用BioStation CT比较了它们对抗癌药物曲妥珠单抗和紫杉醇的敏感性。该抗癌药降低了球体的迁移速度并抑制了球体的融合。另外,源自在NCP平板上生长的人乳腺癌组织B58和B61的原代细胞也表现出相似的药物敏感性。这些结果与使用ATP定量分析的常规测定方法非常吻合。我们使用BioStation CT成像技术确认了药物对接种在96孔板中的细胞的抗肿瘤作用。我们希望该方法可用于新型抗肿瘤药的研究以及针对个性化癌症治疗的药物敏感性测试。

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