Schlenke P, Frohn C, Klüter H, Saballus M, Hammers H J, Zajac S R, Kirchner H
Institute of Immunology and Transfusion Medicine, University of Luebeck School of Medicine, Germany.
Cytometry. 1998 Nov 1;33(3):310-7. doi: 10.1002/(sici)1097-0320(19981101)33:3<310::aid-cyto4>3.0.co;2-k.
We describe a flow cytometric method using a newly designed product, fluorochrome-containing microspheres (Flow Count fluorospheres), which facilitates the precise quantification of cells in whole blood samples or heterogeneous cell suspensions on a single-cell level. These microparticles are easily distinguishable from other events of interest and can be detected by their light-scattering and fluorescence properties. In contrast to the traditional manual or automated cell-counting techniques, this method offers the opportunity to quantify cells simultaneously with flow cytometric immunophenotyping without additional cell loss or other cell preparation steps. We evaluated the accuracy and reproducibility of this flow cytometric method on the determination of CD45+ leukocyte counts and compared the results with those obtained by conventional techniques. Particular interest was focused on the behavior of cells and fluorospheres regarding their sedimentation rate over the period of analysis. The data from 48 blood samples with low, normal, and high leukocyte counts confirmed the reliability and comparability of the flow cytometric method, permitting the determination of white blood cell concentration at least to a limit of 100 cells/microL. A broad field of applications will benefit from this flow cytometric supplement because it is easy to perform and highly accurate. The results appear to be transferable to clinical decision-making monitoring of CD4+ lymphocytes in patients infected with human immunodeficiency virus or of CD34+ hematopoietic cells, optimizing the harvest for peripheral blood stem cell transplantation.
我们描述了一种使用新设计产品——含荧光染料微球(Flow Count荧光微球)的流式细胞术方法,该方法有助于在单细胞水平上对全血样本或异质性细胞悬液中的细胞进行精确量化。这些微粒易于与其他感兴趣的事件区分开来,并且可以通过其光散射和荧光特性进行检测。与传统的手动或自动细胞计数技术不同,该方法提供了在进行流式细胞术免疫表型分析的同时对细胞进行量化的机会,而无需额外的细胞损失或其他细胞制备步骤。我们评估了这种流式细胞术方法在测定CD45 +白细胞计数方面的准确性和可重复性,并将结果与传统技术获得的结果进行了比较。特别关注的是细胞和微球在分析期间的沉降速率行为。来自48份白细胞计数低、正常和高的血样的数据证实了流式细胞术方法的可靠性和可比性,允许至少在100个细胞/微升的限度内测定白细胞浓度。由于这种流式细胞术补充方法易于操作且高度准确,因此广泛的应用领域将从中受益。结果似乎可转化为对感染人类免疫缺陷病毒患者的CD4 +淋巴细胞或CD34 +造血细胞进行临床决策监测,优化外周血干细胞移植的采集。