Near-infrared Raman spectroscopy of single optically trapped biological cells
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- 15 February 2002
- journal article
- Published by Optica Publishing Group in Optics Letters
- Vol. 27 (4) , 249-251
- https://doi.org/10.1364/ol.27.000249
Abstract
We report on the development and testing of a compact laser tweezers Raman spectroscopy (LTRS) system. The system combines optical trapping and near-infrared Raman spectroscopy for manipulation and identification of single biological cells in solution. A low-power diode laser at 785 nm was used for both trapping and excitation for Raman spectroscopy of the suspended microscopic particles. The design of the LTRS system provides high sensitivity and permits real-time spectroscopic measurements of the biological sample. The system was calibrated by use of polystyrene microbeads and tested on living blood cells and on both living and dead yeast cells. As expected, different images and Raman spectra were observed for the different cells. The LTRS system may provide a valuable tool for the study of fundamental cellular processes and the diagnosis of cellular disorders.Keywords
This publication has 16 references indexed in Scilit:
- Near-infrared Raman spectroscopy of single particlesTrAC Trends in Analytical Chemistry, 2001
- Space- and time-resolved spectroscopic analyses in micrometre dimensionsTrAC Trends in Analytical Chemistry, 1999
- Combined Near-Infrared Raman Microprobe and Laser Trapping System: Application to the Analysis of a Single Organic Microdroplet in WaterApplied Spectroscopy, 1998
- Characterization of normal and malignant human hepatocytes by Raman microspectroscopyCancer Letters, 1996
- Two-photon fluorescence excitation in continuous-wave infrared optical tweezersOptics Letters, 1995
- Cell damage by near-IR microbeamsNature, 1995
- Raman and Fluorescence Spectra of Single Optically Trapped Microdroplets in EmulsionsApplied Spectroscopy, 1994
- Optical trapping and manipulation of single cells using infrared laser beamsNature, 1987
- Observation of a single-beam gradient force optical trap for dielectric particlesOptics Letters, 1986