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Unique Impedametric Cell Deformability Assay Using a Multi-Constriction Microfluidic Biosensor

机译:使用多收缩微流体生物传感器的独特的ImpEdametric细胞变形性测定

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摘要

A unique microfluidic device consisting of a multi-constriction microfluidic channel with embedded microelectrodes analyzes bioelectrical and biomechanical attributes of single cells. The biosensor can differentiate cancer cells and their non-tumorigenic counterparts. This study reports the first analysis of mechanical and electrical properties of the normal prostate cell-line (PWR-1E) and prostate cancer cell-line (LNCaP C4-2B). Also, the system is the first that utilizes sensors for rapid measurements of cell velocities and bioimpedance as they transit through multiple iterative constrictions. Distinguishing these normal and tumorigenic prostate cells using solely biomechanical properties resulted in an identification accuracy of 85% at single cell level. The addition of bioelectrical parameters enhanced the identification power to 92% for both cell types.
机译:由具有嵌入式微电极的多压缩微流体通道组成的独特的微流体装置,分析了单细胞的生物电和生物力学属性。生物传感器可以分化癌细胞及其非致致致致致致致致致致致致致致致致致致瘤的对应物。本研究报告了正常前列腺细胞系(PWR-1E)和前列腺癌细胞系(LNCAP C4-2B)的第一次分析了正常前列腺细胞系(PWR-1E)和前列腺癌细胞。此外,该系统是利用传感器的第一种,以便通过多种迭代收缩来运转时的细胞速度和生物阻能度的快速测量。将这些正常和致瘤前列腺细胞区分使用单独的生物力学性质导致单细胞水平在85%的鉴定准确度。对于两种细胞类型,生物电参数的添加增强了92%的识别力。

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