Measuring the linear viscoelastic regime of MCF-7 cells with a monolayer rheometer in the presence of microtubule-active anti-cancer drugs at high concentrations.

IF 4.7 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2022-10-14 eCollection Date: 2022-12-06 DOI:10.1098/rsfs.2022.0036
Suhyang Lee, Khawaja Muhammad Imran Bashir, Dong Hee Jung, Santanu Kumar Basu, Gayeon Seo, Man-Gi Cho, Andreas Wierschem
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Abstract

The rheological properties of cells have vital functional implications. Depending, for instance, on the life cycle, cells show large cell-to-cell variations making it cumbersome to quantify average viscoelastic properties of cells by single-cell techniques. Microfluidic devices, typically working in the nonlinear viscoelastic range, allow fast analysis of single-cell deformation. Averaging over a large number of cells can also be achieved by studying them in a monolayer between rheometer discs. This technique allows applying well-established rheological standard procedures to cell rheology. It offers further advantages like studying cells in the linear viscoelastic range while quantifying cell vitality. Here, we study the applicability of the technique to rather adverse conditions, like for microtubule-active anti-cancer drugs and for a cell line with large size variation. We found a strong impact of the gap width and of normal forces on the moduli and obtained high vitality levels during the rheological study. To enable studying the impact of microtubule-active drugs on vital cells at concentrations several orders of magnitude beyond the half maximal effective concentration for cytotoxicity, we arrested the cell cycle with hydroxyurea. Irrespective of the high concentrations, we observed no clear impact of the microtubule-active drugs.

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在高浓度微管活性抗癌药物存在下,用单层流变仪测量MCF-7细胞的线性粘弹性状态。
细胞的流变特性具有重要的功能意义。例如,根据生命周期的不同,细胞表现出较大的细胞间变化,这使得通过单细胞技术量化细胞的平均粘弹性特性变得困难。微流体设备通常在非线性粘弹性范围内工作,可以快速分析单细胞变形。通过在流变仪圆盘之间的单层中对大量细胞进行研究,也可以实现对它们的平均化。该技术允许将公认的流变学标准程序应用于细胞流变学。它提供了进一步的优势,如在定量细胞活力的同时研究线性粘弹性范围内的细胞。在这里,我们研究了该技术在相当不利的条件下的适用性,如微管活性抗癌药物和具有大尺寸变化的细胞系。我们发现间隙宽度和法向力对模量有很强的影响,并在流变学研究中获得了很高的活力水平。为了研究微管活性药物在超过细胞毒性最大有效浓度一半几个数量级的浓度下对重要细胞的影响,我们用羟基脲阻断了细胞周期。不管高浓度如何,我们都没有观察到微管活性药物的明显影响。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
期刊介绍: ACS Applied Electronic Materials is an interdisciplinary journal publishing original research covering all aspects of electronic materials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials science, engineering, optics, physics, and chemistry into important applications of electronic materials. Sample research topics that span the journal's scope are inorganic, organic, ionic and polymeric materials with properties that include conducting, semiconducting, superconducting, insulating, dielectric, magnetic, optoelectronic, piezoelectric, ferroelectric and thermoelectric. Indexed/​Abstracted: Web of Science SCIE Scopus CAS INSPEC Portico
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