Brown M, Wittwer C
Department of Pathology, University of Utah, ARUP Laboratories, Inc., Salt Lake City, UT 84132, USA.
Clin Chem. 2000 Aug;46(8 Pt 2):1221-9.
The use of flow cytometry in the clinical laboratory has grown substantially in the past decade. This is attributable in part to the development of smaller, user-friendly, less-expensive instruments and a continuous increase in the number of clinical applications. Flow cytometry measures multiple characteristics of individual particles flowing in single file in a stream of fluid. Light scattering at different angles can distinguish differences in size and internal complexity, whereas light emitted from fluorescently labeled antibodies can identify a wide array of cell surface and cytoplasmic antigens. This approach makes flow cytometry a powerful tool for detailed analysis of complex populations in a short period of time. This report reviews the general principles in flow cytometry and selected applications of flow cytometry in the clinical hematology laboratory.
在过去十年中,流式细胞术在临床实验室中的应用有了显著增长。这部分归因于更小、用户友好、成本更低的仪器的开发以及临床应用数量的持续增加。流式细胞术可测量在流体流中单个排列流动的单个颗粒的多种特性。不同角度的光散射可以区分大小和内部复杂性的差异,而荧光标记抗体发出的光可以识别多种细胞表面和细胞质抗原。这种方法使流式细胞术成为在短时间内对复杂群体进行详细分析的强大工具。本报告回顾了流式细胞术的一般原理以及流式细胞术在临床血液学实验室中的选定应用。