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ApoStream™ a new dielectrophoretic device for antibody independent isolation and recovery of viable cancer cells from blood

机译:ApoStream™一种新型的介电泳设备可独立于抗体分离并从血液中回收存活的癌细胞

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摘要

Isolation and enumeration of circulating tumor cells (CTCs) are used to monitor metastatic disease progression and guide cancer therapy. However, currently available technologies are limited to cells expressing specific cell surface markers, such as epithelial cell adhesion molecule (EpCAM) or have limited specificity because they are based on cell size alone. We developed a device, ApoStream that overcomes these limitations by exploiting differences in the biophysical characteristics between cancer cells and normal, healthy blood cells to capture CTCs using dielectrophoretic technology in a microfluidic flow chamber. Further, the system overcomes throughput limitations by operating in continuous mode for efficient isolation and enrichment of CTCs from blood. The performance of the device was optimized using a design of experiment approach for key operating parameters such as frequency, voltage and flow rates, and buffer formulations. Cell spiking studies were conducted using SKOV3 or MDA-MB-231 cell lines that have a high and low expression level of EpCAM, respectively, to demonstrate linearity and precision of recovery independent of EpCAM receptor levels. The average recovery of SKOV3 and MDA-MB-231 cancer cells spiked into approximately 12 × 106 peripheral blood mononuclear cells obtained from 7.5 ml normal human donor blood was 75.4% ± 3.1% (n = 12) and 71.2% ± 1.6% (n = 6), respectively. The intra-day and inter-day precision coefficients of variation of the device were both less than 3%. Linear regression analysis yielded a correlation coefficient (R2) of more than 0.99 for a spiking range of 4–2600 cells. The viability of MDA-MB-231 cancer cells captured with ApoStream was greater than 97.1% and there was no difference in cell growth up to 7 days in culture compared to controls. The ApoStream device demonstrated high precision and linearity of recovery of viable cancer cells independent of their EpCAM expression level. Isolation and enrichment of viable cancer cells from ApoStream enables molecular characterization of CTCs from a wide range of cancer types.
机译:循环肿瘤细胞(CTC)的分离和计数可用于监测转移性疾病的进展并指导癌症治疗。但是,当前可用的技术仅限于表达特定细胞表面标志物(例如上皮细胞粘附分子(EpCAM))的细胞,或者具有局限性,因为它们仅基于细胞大小。我们开发了一种设备ApoStream ,该设备通过利用癌细胞和正常健康血细胞之间的生物物理特性差异来克服这些局限性,从而在微流体流通腔中使用介电电泳技术捕获CTC。此外,该系统通过以连续模式操作以从血液中有效分离和富集四氯化碳克服了吞吐量限制。使用针对关键操作参数(例如频率,电压和流速以及缓冲液配方)的实验方法设计来优化设备的性能。使用分别具有高和低EpCAM表达水平的SKOV3或MDA-MB-231细胞系进行细胞掺入研究,以证明线性和恢复精确度与EpCAM受体水平无关。从7.5毫升正常人供血中提取的约12××10 10 6 sup外周血单个核细胞中,SKOV3和MDA-MB-231癌细胞的平均回收率为75.4%±3.1%(n = 12)。和71.2%±1.6%(n = 6)。该设备的日内和日间精度变异系数均小于3%。线性回归分析得出的相关系数(R 2 )在4–2600个细胞的加标范围内大于0.99。与对照相比,用ApoStream捕获的MDA-MB-231癌细胞的存活率大于97.1%,并且在培养至7天的细胞生长中没有差异。 ApoStream设备展示了高活性和高存活率的线性恢复癌细胞,而与它们的EpCAM表达水平无关。从ApoStream分离和富集可行的癌细胞可以对来自多种癌症类型的CTC进行分子表征。

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