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Automated platform for sensor-based monitoring and controlled assays of living cells and tissues

机译:自动化平台,用于基于传感器的活细胞和组织监测和受控测定

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摘要

Cellular assays have become a fundamental technique in scientific research, pharmaceutical drug screening or toxicity testing. Therefore, the requirements of technical developments for automated assays raised in the same rate. A novel measuring platform was developed, which combines automated assay processing with label-free high-content measuring and real-time monitoring of multiple metabolic and morphologic parameters of living cells or tissues. Core of the system is a test plate with 24 cell culture wells, each equipped with opto-chemical sensor-spots for the determination of cellular oxygen consumption and extracellular acidification, next to electrode-structures for electrical impedance sensing. An automated microscope provides the optical sensor read-out and allows continuous cell imaging. Media and drugs are supplied by a pipetting robot system. Therefore, assay can run over several days without personnel interaction. To demonstrate the performance of the platform in physiologic assays, we continuously recorded the kinetics of metabolic and morphologic parameters of MCF-7 breast cancer cells under the influence of the cytotoxin chloroacetaldehyde. The data point out the time resolved effect kinetics over the complete treatment period. Thereby, the measuring platform overcomes problems of endpoint tests, which cannot monitor the kinetics of different parameters of the same cell population over longer time periods.
机译:细胞分析已成为科学研究,药物筛选或毒性测试中的一项基本技术。因此,自动化检测技术发展的要求以同样的速度提高。开发了一种新颖的测量平台,该平台将自动化分析处理与无标记的高含量测量相结合,并实时监控活细胞或组织的多种代谢和形态学参数。该系统的核心是一个带有24个细胞培养孔的测试板,每个孔都配备有用于确定细胞耗氧量和细胞外酸化程度的光化学传感器点,以及用于电阻抗传感的电极结构。自动显微镜可提供光学传感器读数,并允许连续的细胞成像。培养基和药物由移液机器人系统提供。因此,无需人工干预,化验可以持续数天。为了证明该平台在生理测定中的性能,我们连续记录了MCF-7乳腺癌细胞在细胞毒素氯乙醛影响下的代谢动力学和形态学参数。数据指出了在整个治疗期间内时间分辨的效应动力学。因此,该测量平台克服了端点测试的问题,该问题无法在更长的时间内监视相同细胞群的不同参数的动力学。

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