论文标题

使用集成的微流体微波传感器对单细胞和微粒的高分辨率介电表征

High Resolution Dielectric Characterization of Single Cells and Microparticles Using Integrated Microfluidic Microwave Sensors

论文作者

Secme, Arda, Tefek, Uzay, Sari, Burak, Pisheh, Hadi Sedaghat, Uslu, H. Dilara, Akbulut, Ozge, Kucukoglu, Berk, Erdogan, R. Tufan, Alhmoud, Hashim, Sahin, Ozgur, Hanay, M. Selim

论文摘要

微波传感器可以在生理相关的离子浓度下探测微流体通道中分析物的内在材料特性。在早期研究中,微波传感器已被用于检测单细胞和微粒,但到目前为止,几乎没有研究具有光学显微镜的微波传感器对具有光学显微镜的微波传感器的比较分析。在这里,我们将微波和光学传感结合在一起,以基于其介电特性来区分微观对象。我们设计并制造了两种类型的平面传感器:共面波导谐振器(CPW)和一个分裂环谐振器(SRR)。两个传感器都具有狭窄间隙的传感电极,以检测通过集成在同一芯片上的微流体通道的单个细胞。我们还表明,独立的微波传感器可以实时跟踪细胞大小的相对变化。在感知单个20微米直径的聚苯乙烯颗粒时,获得了约100个CPW的信噪比值,而SRR传感器的信噪比约为100。这些发现表明,微波传感技术可以用作单细胞生物物理实验和微观污染物筛选的互补技术。

Microwave sensors can probe intrinsic material properties of analytes in a microfluidic channel at physiologically relevant ion concentrations. While microwave sensors have been used to detect single cells and microparticles in earlier studies, the synergistic use and comparative analysis of microwave sensors with optical microscopy for material classification and size tracking applications have been scarcely investigated so far. Here we combined microwave and optical sensing to differentiate microscale objects based on their dielectric properties. We designed and fabricated two types of planar sensor: a Coplanar Waveguide Resonator (CPW) and a Split-Ring Resonator (SRR). Both sensors possessed sensing electrodes with a narrow gap to detect single cells passing through a microfluidic channel integrated on the same chip. We also show that standalone microwave sensors can track the relative changes in cellular size in real-time. In sensing single 20-micron diameter polystyrene particles, Signal-to-Noise ratio values of approximately 100 for CPW and 70 for SRR sensors were obtained. These findings demonstrate that microwave sensing technology can serve as a complementary technique for single-cell biophysical experiments and microscale pollutant screening.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源