Habbersett Robert C, Naivar Mark A, Woods Travis A, Goddard Gregory R, Graves Steven W
The National Flow Cytometry Resource, Bioscience Division, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Cytometry A. 2007 Oct;71(10):809-17. doi: 10.1002/cyto.a.20454.
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 < or = 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 < or =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 micros (in the same instrument but at 2.4 mW laser output) demonstrated a detection limit of approximately 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.
流式细胞仪通常配备昂贵的激光器,这些激光器具有高质量(TEM00)输出光束结构和非常稳定的输出功率,这显著增加了系统成本和功率需求。红色二极管激光器可将功耗和成本降至最低,但限制了荧光团的选择。低成本的二极管泵浦固体(DPSS)激光指示器模块可能会提供更多的波长选择,但由于其假定的发射不稳定性限制了它们的应用。首先对一个售价160美元的532 nm DPSS激光指示器模块的噪声特性进行了评估,然后将其用作定制流式细胞仪中的激发光源,用于分析荧光校准和校准微球。测试的十个模块中有八个非常安静(在0至5 MHz之间的均方根噪声≤0.6%)。在慢流系统中,使用一个安静的激光指示器模块作为光源,校准微球的荧光测量产生的变异系数约为3.3%。此外,延长传输时间并使用≤1 mW的激光功率,可实现一组彩虹微球中所有8个峰的基线分辨率,以及每个颗粒<20个藻红蛋白分子的检测限。当传输时间缩短至25微秒时(在同一台仪器中,但激光输出为2.4 mW)收集的数据显示,检测限约为75个藻红蛋白分子,变异系数约为2.7%。测试的激光指示器模块的性能、成本、尺寸和功耗表明,它可能适用于传统流式细胞术,特别是如果它与支持延长传输时间的细胞仪相结合。