Miniaturized optofluidic label-free cytometry

Xuantao Su, Yan Yang, Xuming Sun, Xu Qiao, K. Song, B. Kong
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Abstract

Flow cytometry has wide applications in cell biology and medicine. Compared with conventional fluorescence labeling, light scattering can be adopted as a label-free cytometric method. Integration of optics with microfluidics, the optofluidic technology may help for the advancement of the next generation miniaturized label-free cytometry. Optofluidic label-free cytometry that can obtain two dimensional light scattering patterns from single cells has been developed. Laser light is fibered-coupled onto a microfluidic chip, and light scattering patterns can be obtained via a CMOS detector. Light scattering from cells or particles in such a cytometric setup can be simulated via the Mie theory or finite-difference time-domain (FDTD) method. The experimental results agree well with the simulated ones for yeast cells. Further development of the optofluidic label-free cytometric technique may help for early cancer screening, and provide portable instruments for clinics and home care.
小型化的光流体无标记细胞术
流式细胞术在细胞生物学和医学中有着广泛的应用。与传统的荧光标记相比,光散射是一种无标记的细胞检测方法。光流体技术将光学技术与微流体技术相结合,将有助于下一代微型化无标记细胞术的发展。光流体无标记细胞术可以获得单细胞的二维光散射图。将激光光纤耦合到微流控芯片上,通过CMOS探测器获得光散射图。细胞或粒子的光散射可以通过Mie理论或时域有限差分(FDTD)方法进行模拟。实验结果与酵母细胞的模拟结果吻合较好。光流体无标记细胞技术的进一步发展可能有助于早期癌症筛查,并为诊所和家庭护理提供便携式仪器。
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