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Multimodal label-free in vitro toxicity testing with digital holographic microscopy

机译:使用数字全息显微镜进行的多模式无标记体外毒性测试

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Common in vitro toxicity tests of drugs, chemicals or nanomaterials involves the measurement of cellular endpoints like stress response, cell viability, proliferation or cell death. The assay systems determine enzyme activity or protein expression by optical read out of enzyme substrates or marker protein labeling. These standard procedures have several disadvantages. Cellular processes have to be stopped at a distinct time point for the read out, where usually only parts of the cells were affected by the treatment with substances. Typically, only one parameter is analyzed and detection of cellular processes requires several time consuming incubations and washing steps. Here we have applied digital holographic microscopy (DHM) for a multimodal label-free analysis of drug toxicity. NIH 3T3 cells were incubated with 1 uM Taxol for 24 h. The recorded quantitative phase images were analyzed for cell thickness, cell volume, dry mass and cell migration. Taxol treated cells showed rapidly decreasing cell motility as measure of cell viability. A short increase in cell thickness and dry mass indicated cell division and growth in control cells, whereas Taxol treatment resulted in a continuous increase in cell height followed by a rapid decrease and a decrease of dry mass as indicators of cell death. Multimodal DHM analysis of drug treatment by multiple parameters allows direct and label-free detection of several toxicity parameters in parallel. DHM can quantify cellular reactions minimally invasive over a long time period and analyze kinetics of delayed cellular responses. Our results demonstrate digital holographic microscopy as a valuable tool for multimodal toxicity testing.
机译:药物,化学药品或纳米材料的常见体外毒性测试涉及对细胞终点的测量,例如应激反应,细胞生存力,增殖或细胞死亡。该测定系统通过光学读取酶底物或标记蛋白标记来确定酶活性或蛋白表达。这些标准程序有几个缺点。必须在不同的时间点停止细胞过程以进行读出,在这种情况下,通常只有部分细胞受到物质处理的影响。通常,仅分析一个参数,检测细胞过程需要耗时的孵育和洗涤步骤。在这里,我们已将数字全息显微术(DHM)用于药物毒性的多峰无标记分析。 NIH 3T3细胞与1 uM紫杉醇孵育24小时。分析记录的定量相图像的细胞厚度,细胞体积,干重和细胞迁移。紫杉醇处理的细胞显示出迅速降低的细胞运动性,作为细胞活力的度量。细胞厚度和干重的短时增加表明对照细胞中的细胞分裂和生长,而紫杉醇处理导致细胞高度连续增加,随后迅速减少并减少干重,这是细胞死亡的指标。通过多个参数对药物治疗进行多模式DHM分析,可以并行,直接,无标签地检测多个毒性参数。 DHM可以量化长时间内微创的细胞反应,并分析延迟细胞反应的动力学。我们的结果表明,数字全息显微镜是进行多峰毒性测试的宝贵工具。

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