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Robotic Liquid Handlers and Semiautomated Cell Quantification Systems Increase Consistency and Reproducibility in High-Throughput, Cell-Based Assay

机译:机器人液体处理器和半自动化细胞定量系统可提高基于细胞的高通量分析的一致性和可重复性

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To achieve maximum clinical utility, cell-based assays must produce reliable and reproducible results. To address these issues, we have developed and incorporated two automated systems into the ChemoFx assay (Precision Therapeutics, Inc., Pittsburgh, PA), a cell-based assay used to assess chemosensitivity and resistance of tumor cells to a spectrum of chemotherapeutic agents. An automated liquid-handling system plates cells and prepares and applies chemotherapeutic agents. Separate well-imaging and cell-counting systems quantify cell counts. In addition, we have developed a computerized tool to validate the accuracy of the cell quantification system. We report here that these automated systems improve the accuracy and precision of the ChemoFx assay. These systems also reduce technician time and human-induced variability. We propose that such automated systems could be incorporated into other cell-based assays and would provide increased confidence that such assays could be used to provide clinically useful information.
机译:为了获得最大的临床效用,基于细胞的测定必须产生可靠且可重复的结果。为了解决这些问题,我们开发了两个自动化系统并将其整合到ChemoFx分析中(Precision Therapeutics,Inc.,匹兹堡,宾夕法尼亚州),这是一种基于细胞的分析方法,用于评估肿瘤细胞对多种化学治疗剂的化学敏感性和耐药性。自动化的液体处理系统可对细胞进行铺板,并准备和施加化学治疗剂。独立的成像和细胞计数系统可量化细胞计数。此外,我们还开发了一种计算机化工具来验证细胞定量系统的准确性。我们在这里报告说,这些自动化系统提高了ChemoFx分析的准确性和精确度。这些系统还减少了技术人员的时间并减少了人为因素。我们建议可以将这种自动化系统并入其他基于细胞的测定中,并且可以提高这种测定可以用于提供临床有用信息的信心。

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