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使用532 nm激光激发提高免疫荧光敏感性。

Increased immunofluorescence sensitivity using 532 nm laser excitation.

作者信息

Perfetto Stephen P, Roederer Mario

机构信息

Vaccine Research Center, NIAID, NIH, Bethesda, MD 20892-3015, USA.

出版信息

Cytometry A. 2007 Feb;71(2):73-9. doi: 10.1002/cyto.a.20358.

Abstract

OBJECTIVE

We evaluated the use of a high power, diode pulsed solid-state laser emitting 532 nm light for immunofluorescence applications. We compared the sensitivity and utility of this laser with the standard 488 nm excitation.

METHODS

A flow cytometer was equipped with both a 488 nm and a 532 nm laser; fluorescence emissions from each laser were collected using the same filters and the same detector system. Cells or compensation beads (e.g. latex beads coated with anti-kappa antibodies) were stained with monoclonal antibodies conjugated to phycoerythrin (PE) as well as the PE tandem dyes TRPE, Cy5PE, Cy5.5PE, and Cy7PE. The sensitivity of detection of these reagents as well as those in heavily compensated channels was quantified by measuring the spreading error for a primary detector into a secondary detector.

RESULTS

Measurement of the fluorescence emission of PE and PE-tandem dyes was considerably more sensitive when using 532 nm excitation (150 mW) as compared with 488 nm excitation (20 mW). In addition, as the absolute number of photoelectrons collected was greater, there was less measurement-error-induced spread into the compensated channels. As an example, when comparing the spreading error of PE labeled cells into the TRPE detector, the green laser was found to be 15-fold more sensitive as compared with the blue laser. In addition, the blue laser produced more autofluoresent signal from cells as compared with the green laser. Together, these advantages of the 532 nm excitation line provides for a significantly improved detection of immunofluorescence staining.

摘要

目的

我们评估了用于免疫荧光应用的发射532 nm光的高功率二极管脉冲固态激光器的使用情况。我们将这种激光器的灵敏度和实用性与标准的488 nm激发进行了比较。

方法

一台流式细胞仪配备了488 nm和532 nm两种激光器;使用相同的滤光片和相同的检测系统收集每种激光器的荧光发射。细胞或补偿微球(例如涂有抗κ抗体的乳胶微球)用与藻红蛋白(PE)以及PE串联染料TRPE、Cy5PE、Cy5.5PE和Cy7PE偶联的单克隆抗体进行染色。通过测量主探测器到副探测器的扩散误差来量化这些试剂以及重度补偿通道中试剂的检测灵敏度。

结果

与488 nm激发(20 mW)相比,使用532 nm激发(150 mW)时,PE和PE串联染料的荧光发射测量灵敏度要高得多。此外,由于收集到的光电子绝对数量更多,测量误差引起的向补偿通道的扩散更少。例如,在比较PE标记细胞向TRPE探测器的扩散误差时,发现绿色激光器的灵敏度比蓝色激光器高15倍。此外,与绿色激光器相比,蓝色激光器从细胞产生的自发荧光信号更多。总之,532 nm激发线的这些优点显著提高了免疫荧光染色的检测效果。

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