School of Biomedical Engineering and Sciences, Virginia Tech-Wake Forest University, Blacksburg, VA 24061, USA.
Electrophoresis. 2011 Nov;32(22):3164-71. doi: 10.1002/elps.201100351.
The use of non-invasive methods to detect and enrich circulating tumor cells (CTCs) independent of their genotype is critical for early diagnostic and treatment purposes. The key to using CTCs as predictive clinical biomarkers is their separation and enrichment. This work presents the use of a contactless dielectrophoresis (cDEP) device to investigate the frequency response of cells and calculate their area-specific membrane capacitance. This is the first demonstration of a cDEP device which is capable of operating between 10 and 100 kHz. Positive and negative dielectrophoretic responses were observed in red blood cells, macrophages, breast cancer, and leukemia cells. The area-specific membrane capacitances of MDA-MB231, THP-1 and PC1 cells were determined to be 0.01518 ± 0.0013, 0.01719 ± 0.0020, 0.01275 ± 0.0018 (F/m(2)), respectively. By first establishing the dielectrophoretic responses of cancerous cells within this cDEP device, conditions to detect and enrich tumor cells from mixtures with non-transformed cells can be determined providing further information to develop methods to isolate these rare cells.
使用非侵入性方法来检测和富集循环肿瘤细胞(CTC),而不依赖其基因型,这对于早期诊断和治疗目的至关重要。将 CTC 用作预测性临床生物标志物的关键在于它们的分离和富集。本工作介绍了使用无接触式介电泳(cDEP)装置来研究细胞的频率响应并计算其面积特异性膜电容。这是第一个能够在 10 到 100 kHz 之间工作的 cDEP 装置的演示。在红细胞、巨噬细胞、乳腺癌和白血病细胞中观察到正和负介电泳响应。MDA-MB231、THP-1 和 PC1 细胞的面积特异性膜电容分别确定为 0.01518 ± 0.0013、0.01719 ± 0.0020、0.01275 ± 0.0018(F/m²)。通过首先在该 cDEP 装置中建立癌细胞的介电泳响应,可以确定从与非转化细胞的混合物中检测和富集肿瘤细胞的条件,从而为开发分离这些稀有细胞的方法提供了更多信息。