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Breast cancer cell obatoclax response characterization using passivated-electrode insulator-based dielectrophoresis

机译:基于钝化电极绝缘体介电电泳的乳腺癌细胞obclaclax反应表征

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摘要

Inherent electrical properties of cells can be beneficial to characterize different cell lines and their response to experimental drugs. This paper presents a novel method to characterize the response of breast cancer cells to drug stimuli through use of off-chip passivated-electrode insulator-based dielectrophoresis (OπDEP) and the application of AC electric fields. This work is the first to demonstrate the ability of OπDEP to differentiate between two closely related breast cancer cell lines, LCC1 and LCC9 while assessing their drug sensitivity to an experimental anti-cancer agent, Obatoclax. Although both cell lines are derivatives of estrogen-responsive MCF-7 breast cancer cells, growth of LCC1 is estrogen independent and anti-estrogen responsive, while LCC9 is both estrogen-independent and anti-estrogen resistant. Under the same operating conditions, LCC1 and LCC9 had different DEP profiles. LCC1 cells had a trapping onset (crossover) frequency of 700 kHz and trapping efficiencies between 30–40%, while LCC9 cells had a lower crossover frequency (100 kHz) and showed higher trapping efficiencies of 40–60%. When exposed to the Obatoclax, both cell lines exhibited dose-dependent shifts in DEP crossover frequency and trapping efficiency. Here, DEP results supplemented with cell morphology and proliferation assays help us to understand the response of these breast cancer cells to Obatoclax.
机译:细胞固有的电学性质可能有助于表征不同的细胞系及其对实验药物的反应。本文提出了一种新的方法来表征乳腺癌细胞对药物刺激的反应,方法是使用芯片外钝化器绝缘介电电泳(OπDEP)和交流电场。这项工作是第一个证明OπDEP区分两种密切相关的乳腺癌细胞LCC1和LCC9的能力,同时评估它们对实验性抗癌药物Obatoclax的敏感性的研究。尽管这两种细胞系都是雌激素应答性MCF-7乳腺癌细胞的衍生物,但是LCC1的生长是雌激素非依赖性和抗雌激素应答的,而LCC9既是雌激素依赖性的又是抗雌激素耐药的。在相同的工作条件下,LCC1和LCC9具有不同的DEP配置文件。 LCC1细胞的捕获开始(交叉)频率为700 kHz,捕获效率在30–40%之间,而LCC9细胞具有较低的交叉频率(100 kHz),并显示较高的捕获效率为40–60%。当暴露于Obatoclax时,两种细胞系都表现出DEP穿越频率和捕获效率的剂量依赖性变化。在这里,DEP结果辅以细胞形态学和增殖测定有助于我们了解这些乳腺癌细胞对Obatoclax的反应。

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