拉曼光谱
微流控
激光器
材料科学
单细胞分析
光电子学
纳米技术
化学
光学
细胞
生物化学
物理
作者
Sebastian Dochow,Christoph Krafft,Ute Neugebauer,Thomas Bocklitz,Thomas Henkel,Günter Mayer,Jens Albert,Jürgen Popp
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2011-01-01
卷期号:11 (8): 1484-1484
被引量:196
摘要
Raman spectroscopy has been recognized to be a powerful tool for label-free discrimination of cells. Sampling methods are under development to utilize the unique capabilities to identify cells in body fluids such as saliva, urine or blood. The current study applied optical traps in combination with Raman spectroscopy to acquire spectra of single cells in microfluidic glass channels. Optical traps were realized by two 1070 nm single mode fibre lasers. Microflows were controlled by a syringe pump system. A novel microfluidic glass chip was designed to inject single cells, modify the flow speed, accommodate the laser fibres and sort cells after Raman based identification. Whereas the integrated microchip setup used 514 nm for excitation of Raman spectra, a quartz capillary setup excited spectra with 785 nm laser wavelength. Classification models were trained using linear discriminant analysis to differentiate erythrocytes, leukocytes, acute myeloid leukaemia cells (OCI-AML3), and breast tumour cells BT-20 and MCF-7 with accuracies that are comparable with previous Raman experiments of dried cells and fixed cells in a Petri dish. Implementation into microfluidic environments enables a high degree of automation that is required to improve the throughput of the approach for Raman activated cell sorting.
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