Camp Charles H, Yegnanarayanan Siva, Eftekhar Ali A, Sridhar Hamsa, Adibi Ali
School of Electrical and Computer Engineering, Georgia Institute of Technology, 777 Atlantic Dr., Atlanta, GA, 30332, USA.
Opt Express. 2009 Dec 7;17(25):22879-89. doi: 10.1364/OE.17.022879.
Flow cytometry is an ever-advancing high-throughput multivariate analysis tool that natively provides size and morphological information. To obtain molecular information, however, typically requires the addition of fluorophores, which are limited by spectral overlap, nonspecific binding, available conjugation chemistries, and cellular toxicity. A complementary or alternative, label-free approach to molecular information is through multiplex coherent anti-Stokes Raman scattering (MCARS), which is a coherent, nonlinear optical method that provides a wealth of molecular information by probing the Raman energies within a molecule. In this work, we demonstrate the unique capability of our MCARS flow cytometer to distinguish flowing particles and discuss system performance capabilities and possibilities.
流式细胞术是一种不断发展的高通量多变量分析工具,它本身就能提供大小和形态信息。然而,要获得分子信息通常需要添加荧光团,而荧光团受到光谱重叠、非特异性结合、可用的共轭化学以及细胞毒性的限制。一种用于获取分子信息的互补或替代的无标记方法是通过多路相干反斯托克斯拉曼散射(MCARS),这是一种相干非线性光学方法,通过探测分子内的拉曼能量来提供丰富的分子信息。在这项工作中,我们展示了我们的MCARS流式细胞仪区分流动颗粒的独特能力,并讨论了系统性能、能力和可能性。