Department of Physics , Virginia Commonwealth University , Richmond , Virginia 23284 , United States.
Department of Chemical Engineering , University of Utah , Salt Lake City , Utah 84112 , United States.
Anal Chem. 2018 Mar 6;90(5):3299-3306. doi: 10.1021/acs.analchem.7b04828. Epub 2018 Feb 13.
We report the development of high-speed live-cell interferometry (HSLCI), a new multisample, multidrug testing platform for directly measuring tumor therapy response via real-time optical cell biomass measurements. As a proof of concept, we show that HSLCI rapidly profiles changes in biomass in BRAF inhibitor (BRAFi)-sensitive parental melanoma cell lines and in their isogenic BRAFi-resistant sublines. We show reproducible results from two different HSLCI platforms at two institutions that generate biomass kinetic signatures capable of discriminating between BRAFi-sensitive and -resistant melanoma cells within 24 h. Like other quantitative phase imaging (QPI) modalities, HSLCI is well-suited to noninvasive measurements of single cells and cell clusters, requiring no fluorescence or dye labeling. HSLCI is substantially faster and more sensitive than field-standard growth inhibition assays, and in terms of the number of cells measured simultaneously, the number of drugs tested in parallel, and temporal measurement range, it exceeds the state of the art by more than 10-fold. The accuracy and speed of HSLCI in profiling tumor cell heterogeneity and therapy resistance are promising features of potential tools to guide patient therapeutic selections.
我们开发了高速活细胞干涉测量技术(HSLCI),这是一种新的多样本、多药物测试平台,可通过实时光学细胞生物量测量直接测量肿瘤治疗反应。作为概念验证,我们表明 HSLCI 可快速分析 BRAF 抑制剂(BRAFi)敏感的亲本黑素瘤细胞系及其同源 BRAFi 耐药亚系的生物量变化。我们展示了来自两个不同机构的两个不同 HSLCI 平台的可重复结果,这些结果生成的生物量动力学特征能够在 24 小时内区分 BRAFi 敏感和耐药黑素瘤细胞。与其他定量相位成像(QPI)模式一样,HSLCI 非常适合于对单细胞和细胞簇进行非侵入性测量,无需荧光或染料标记。HSLCI 比标准的现场生长抑制测定法快得多,灵敏度也更高,在同时测量的细胞数量、平行测试的药物数量以及时间测量范围方面,其速度和灵敏度比现有技术提高了 10 倍以上。HSLCI 在分析肿瘤细胞异质性和治疗耐药性方面的准确性和速度是指导患者治疗选择的潜在工具的有前途的特征。
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