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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Microwave Monitoring of Single Cell Monocytes Subjected to Electroporation
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Microwave Monitoring of Single Cell Monocytes Subjected to Electroporation

机译:微波监测单细胞单核细胞的电穿孔

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This paper presents the monitoring of single cells subjected to electroporation using microwave dielectric spectroscopy. The experimental results showed first a clear distinction between two cell states: viable cells and affected ones by a chemical treatment (Saponin). It also pointed out a high correlation (R > 0.94) with biological standard techniques in detecting the two types of electroporation: the reversible and irreversible ones. The developed microfluidic and microwave-based sensor exposes a decrease in the capacitive and conductive contrasts of the investigated single cells treated by irreversible electroporation indicating damages at the cellular level, while cells under reversible electroporation present a similar dielectric response to that of the nontreated cells. This result corresponds to results frequently employed in biological studies. More interestingly, a study of the kinetics of the cell's damage induction over time, by electroporation, has been experimentally done, which makes microwave dielectric spectroscopy an attractive technique for cell's electroporation researches.
机译:本文介绍了使用微波介电谱对单细胞进行电穿孔的监测。实验结果首先显示出两种细胞状态之间的明显区别:活细胞和通过化学处理(皂苷)受影响的细胞。它还指出了与生物学标准技术在检测两种类型的电穿孔中的高度相关性(R> 0.94):可逆和不可逆。开发的基于微流体和微波的传感器暴露了通过不可逆电穿孔处理的被研究单细胞的电容和导电对比的降低,表明在细胞水平上的损伤,而在可逆电穿孔下的细胞表现出与未处理细胞相似的介电响应。该结果对应于生物学研究中经常使用的结果。更有趣的是,已经通过实验研究了随时间通过电穿孔引起的细胞损伤诱导的动力学,这使得微波介电光谱法成为细胞电穿孔研究的一种有吸引力的技术。

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