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Microfluidic Devices for Terahertz Spectroscopy of Live Cells Toward Lab-on-a-Chip Applications

机译:太赫兹光谱活细胞微流控设备在芯片实验室中的应用

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THz spectroscopy is an emerging technique for studying the dynamics and interactions of cells and biomolecules, but many practical challenges still remain in experimental studies. We present a prototype of simple and inexpensive cell-trapping microfluidic chip for THz spectroscopic study of live cells. Cells are transported, trapped and concentrated into the THz exposure region by applying an AC bias signal while the chip maintains a steady temperature at 37 °C by resistive heating. We conduct some preliminary experiments on E. coli and T-cell solution and compare the transmission spectra of empty channels, channels filled with aqueous media only, and channels filled with aqueous media with un-concentrated and concentrated cells.
机译:太赫兹光谱学是研究细胞与生物分子的动力学和相互作用的新兴技术,但是实验研究中仍然存在许多实际挑战。我们提出了一种简单且廉价的细胞捕获微流体芯片的原型,用于活细胞的太赫兹光谱研究。通过施加AC偏置信号,细胞被运输,捕获并集中到THz暴露区域,同时芯片通过电阻加热将温度保持在37°C的稳定温度。我们对大肠杆菌和T细胞溶液进行了一些初步实验,比较了空通道,仅充满水性介质的通道和充满未浓缩和浓缩细胞的水性介质的通道的透射光谱。

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