Evaluation of a green laser pointer for flow cytometry
Open Access
- 21 August 2007
- journal article
- research article
- Published by Wiley in Cytometry Part A
- Vol. 71A (10) , 809-817
- https://doi.org/10.1002/cyto.a.20454
Abstract
Flow cytometers typically incorporate expensive lasers with high‐quality (TEM00) output beam structure and very stable output power, significantly increasing system cost and power requirements. Red diode lasers minimize power consumption and cost, but limit fluorophore selection. Low‐cost DPSS laser pointer modules could possibly offer increased wavelength selection but presumed emission instability has limited their use. A $160 DPSS 532 nm laser pointer module was first evaluated for noise characteristics and then used as the excitation light source in a custom‐built flow cytometer for the analysis of fluorescent calibration and alignment microspheres. Eight of ten modules tested were very quiet (RMS noise ≤ 0.6% between 0 and 5 MHz). With a quiet laser pointer module as the light source in a slow‐flow system, fluorescence measurements from alignment microspheres produced CVs of about 3.3%. Furthermore, the use of extended transit times and ≤1 mW of laser power produced both baseline resolution of all 8 peaks in a set of Rainbow microspheres, and a detection limit of <20 phycoerythrin molecules per particle. Data collected with the transit time reduced to 25 μs (in the same instrument but at 2.4 mW laser output) demonstrated a detection limit of ∼75 phycoerythrin molecules and CVs of about 2.7%. The performance, cost, size, and power consumption of the tested laser pointer module suggests that it may be suitable for use in conventional flow cytometry, particularly if it were coupled with cytometers that support extended transit times. Published 2007 Wiley‐Liss, Inc.Keywords
This publication has 25 references indexed in Scilit:
- Open, reconfigurable cytometric acquisition system: ORCASCytometry Part A, 2007
- Ultrasonic particle‐concentration for sheathless focusing of particles for analysis in a flow cytometerCytometry Part A, 2006
- High throughput particle analysis: Combining dielectrophoretic particle focussing with confocal optical detectionBiosensors and Bioelectronics, 2005
- Design and characterization of a compact dual channel virus counterCytometry Part A, 2005
- Analysis of violet‐excited fluorochromes by flow cytometry using a violet laser diodeCytometry Part A, 2003
- Development of a microfluidic device for fluorescence activated cell sortingJournal of Micromechanics and Microengineering, 2002
- Impact of the international program for quality assessment and standardization for immunological measures relevant to HIV/AIDS: QASICytometry, 2002
- T‐cell subset counting and the fight against AIDS: Reflections over a 20‐year struggleCytometry, 2002
- Precise CD4 T‐cell counting using red diode laser excitation: For richer, for poorerCytometry, 2002
- Single DNA Fragment Detection by Flow CytometryPublished by Wiley ,2000