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使用荧光乳胶微球对中性粒细胞吞噬作用进行定量分析。显微镜检查与流式细胞术的相关性。

Quantitation of neutrophil phagocytosis, using fluorescent latex beads. Correlation of microscopy and flow cytometry.

作者信息

Dunn P A, Tyrer H W

出版信息

J Lab Clin Med. 1981 Sep;98(3):374-81.

PMID:7021719
Abstract

Phagocytic particle uptake was calculated from data obtained by microscopy and flow cytometry utilizing commercially available fluorescent beads of uniform (2 micrometer diameter) size. PMNs collected from a Ficoll-Hypaque density gradient were incubated with the fluorescent beads in human plasma and gently washed in buffer to remove most of the extracellular beads. The cells were observed and analyzed by fluorescence microscopy (sample size = 300 cells) and flow cytometry (sample size = 50,000 cells) to determine the percent phagocytic cells, number of beads per phagocytic cell, and beads per 100 PMNs. Correlation of these indices for microscopic and machine counts was in high agreement, with r values greater than 0.80. Since flow cytometry increases the sample size 500-fold above that attained by manual microscopic counts, the coefficient of variation is proportionately reduced. Unlike other automated techniques for phagocytosis such as the use of radiolabeled particles, flow cytometry yields information on the cell population such as percent of phagocytic cells and the distribution of intracellular fluorescent beads per cell as well as particle uptake. Thus the advantages of speed, greater statistical accuracy, and the ability to accumulate information on the cell population indicate that flow cytofluorometry has unique applications for the study of phagocytosis. Application of the technique to in vitro stimulation of blood neutrophil phagocytic uptake is included.

摘要

吞噬性颗粒摄取量是根据利用市售统一尺寸(直径2微米)荧光珠通过显微镜检查和流式细胞术获得的数据计算得出的。从Ficoll-泛影葡胺密度梯度中收集的多形核中性粒细胞(PMN)与荧光珠在人血浆中孵育,然后在缓冲液中轻轻洗涤以去除大部分细胞外珠子。通过荧光显微镜(样本量=300个细胞)和流式细胞术(样本量=50,000个细胞)观察和分析细胞,以确定吞噬细胞百分比、每个吞噬细胞的珠子数量以及每100个PMN中的珠子数量。这些指数在显微镜计数和机器计数之间的相关性高度一致,r值大于0.80。由于流式细胞术使样本量比手动显微镜计数增加了500倍,变异系数相应降低。与其他吞噬作用的自动化技术(如使用放射性标记颗粒)不同,流式细胞术可提供有关细胞群体的信息,如吞噬细胞百分比、每个细胞内荧光珠的分布以及颗粒摄取情况。因此,速度快、统计准确性更高以及能够积累有关细胞群体信息的优势表明,流式细胞荧光术在吞噬作用研究中具有独特的应用。本文还介绍了该技术在体外刺激血液中性粒细胞吞噬摄取方面的应用。

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