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体积毛细管细胞计数法:一种绝对细胞计数的新方法。

Volumetric capillary cytometry: a new method for absolute cell enumeration.

作者信息

Dietz L J, Dubrow R S, Manian B S, Sizto N L

机构信息

Biometric Imaging, Mountain View, California 94043, USA.

出版信息

Cytometry. 1996 Mar 1;23(3):177-86. doi: 10.1002/(SICI)1097-0320(19960301)23:3<177::AID-CYTO1>3.0.CO;2-G.

DOI:10.1002/(SICI)1097-0320(19960301)23:3<177::AID-CYTO1>3.0.CO;2-G
PMID:8974863
Abstract

This article describes a novel cytometry system that is capable of imaging, identifying, and counting populations of fluorescently labeled cells within a precisely known volume of unlysed whole blood contained in a precision capillary. The whole blood is reacted with dye-labeled antibodies directed at cell surface antigens. A red excitation source (helium-neon laser) is used to minimize auto-fluorescence and interference by blood components. A two-color fluorescence detection system is described, using the dyes Cy5 and Cy5.5, allowing the simultaneous detection and quantitation of two different types of surface antigens. Image processing techniques are used to identify cellular events in the image and to quantitate the fluorescent intensities in both color planes. The utility of this technique is demonstrated by performing absolute CD3+/CD4+ lymphocyte counts in whole blood, with minimal sample preparation, and with the blood sample completely contained in a disposable cartridge. A correlation study comparing this technique to flow cytometry gives a correlation coefficient of 0.98. In addition, the ability of this system to monitor reaction kinetics is demonstrated with a measurement of the rate of association of the anti-CD4 antibody onto the surface of CD4+ lymphocytes.

摘要

本文介绍了一种新型细胞计数系统,该系统能够对精确毛细管中已知体积的未裂解全血内荧光标记细胞群体进行成像、识别和计数。全血与针对细胞表面抗原的染料标记抗体发生反应。使用红色激发源(氦氖激光器)以尽量减少自体荧光和血液成分的干扰。描述了一种双色荧光检测系统,使用Cy5和Cy5.5染料,可同时检测和定量两种不同类型的表面抗原。图像处理技术用于识别图像中的细胞事件,并对两个颜色平面中的荧光强度进行定量。通过在全血中进行绝对CD3+/CD4+淋巴细胞计数,以最少的样品制备,且血样完全包含在一次性盒中,证明了该技术的实用性。将该技术与流式细胞术进行比较的相关性研究得出的相关系数为0.98。此外,通过测量抗CD4抗体与CD4+淋巴细胞表面结合的速率,证明了该系统监测反应动力学的能力。

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