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自动电旋转显示,胰腺癌细胞的电动分离对获得性化疗耐药、血清饥饿和上皮-间质转化具有很强的抗性。

Automated electrorotation shows electrokinetic separation of pancreatic cancer cells is robust to acquired chemotherapy resistance, serum starvation, and EMT.

作者信息

Lannin Timothy, Su Wey-Wey, Gruber Conor, Cardle Ian, Huang Chao, Thege Fredrik, Kirby Brian

机构信息

Sibley School of Mechanical and Aerospace Engineering, Cornell University , Ithaca, New York 14853, USA.

College of Agriculture and Life Sciences, Cornell University , Ithaca, New York 14853, USA.

出版信息

Biomicrofluidics. 2016 Nov 29;10(6):064109. doi: 10.1063/1.4964929. eCollection 2016 Nov.

Abstract

We used automated electrorotation to measure the cytoplasmic permittivity, cytoplasmic conductivity, and specific membrane capacitance of pancreatic cancer cells under environmental perturbation to evaluate the effects of serum starvation, epithelial-to-mesenchymal transition, and evolution of chemotherapy resistance which may be associated with the development and dissemination of cancer. First, we compared gemcitabine-resistant BxPC3 subclones with gemcitabine-naive parental cells. Second, we serum-starved BxPC3 and PANC-1 cells and compared them to untreated counterparts. Third, we induced the epithelial-to-mesenchymal transition in PANC-1 cells and compared them to untreated PANC-1 cells. We also measured the electrorotation spectra of white blood cells isolated from a healthy donor. The properties from fit electrorotation spectra were used to compute dielectrophoresis (DEP) spectra and crossover frequencies. For all three experiments, the median crossover frequency for both treated and untreated pancreatic cancer cells remained significantly lower than the median crossover frequency for white blood cells. The robustness of the crossover frequency to these treatments indicates that DEP is a promising technique for enhancing capture of circulating cancer cells.

摘要

我们使用自动电旋转技术来测量胰腺癌细胞在环境扰动下的细胞质电容率、细胞质电导率和比膜电容,以评估血清饥饿、上皮-间质转化以及化疗耐药性演变的影响,这些可能与癌症的发生和扩散有关。首先,我们将吉西他滨耐药的BxPC3亚克隆与未接触过吉西他滨的亲本细胞进行比较。其次,我们对BxPC3和PANC-1细胞进行血清饥饿处理,并将它们与未处理的对应细胞进行比较。第三,我们诱导PANC-1细胞发生上皮-间质转化,并将它们与未处理的PANC-1细胞进行比较。我们还测量了从健康供体分离的白细胞的电旋转光谱。拟合电旋转光谱的特性用于计算介电泳(DEP)光谱和交叉频率。对于所有这三个实验,处理过的和未处理的胰腺癌细胞的中位交叉频率均显著低于白细胞的中位交叉频率。交叉频率对这些处理的稳健性表明,DEP是一种增强循环癌细胞捕获的有前景的技术。

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