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通过激光散射对单个红细胞的体积和血红蛋白浓度进行准确且独立的测量。

Accurate and independent measurement of volume and hemoglobin concentration of individual red cells by laser light scattering.

作者信息

Mohandas N, Kim Y R, Tycko D H, Orlik J, Wyatt J, Groner W

出版信息

Blood. 1986 Aug;68(2):506-13.

PMID:3730613
Abstract

Cell volume (MCV) and hemoglobin concentration (MCHC) are the red cell indices used to characterize the blood of patients with anemia. Since the introduction of flow cytometric methods for the measurement of these indices, it has generally been assumed that the values derived by these instruments are accurate. However, it has recently been shown that a number of cellular factors, including alterations in cellular deformability, can lead to inaccurate measurement of cell volume by these automated instruments. Because cell hemoglobin concentration and hematocrit are computed from the measured values of cell volume, accuracy of these indices is also compromised by inaccurate determination of cell volume. A recently developed experimental flow cytometric method based on laser light scattering, which can independently measure volume and hemoglobin concentration, has been used in the present study to measure MCV and MCHC of density-fractionated normal and sickle red cells, hydrated and dehydrated normal red cells, and various pathologic cells. We found that the new method accurately measures both volume and hemoglobin concentrations over a wide range of MCV (30 to 120 fL) and MCHC (27 to 45 g/dL) values. This is in contrast to currently available methods in which hemoglobin concentration values are accurately measured over a more limited range (27 to 35 g/dL). In addition, as the experimental method independently measures volume and hemoglobin concentration of individual red cells, it allowed us to generate histograms of volume and hemoglobin concentration distribution and derive coefficient of variation for volume distribution and standard deviation of hemoglobin concentration distribution. We have been able to document that volume and hemoglobin concentration distributions can vary independently of each other in pathologic red cell samples.

摘要

细胞体积(平均红细胞体积,MCV)和血红蛋白浓度(平均血红蛋白浓度,MCHC)是用于表征贫血患者血液的红细胞指数。自从引入流式细胞术方法来测量这些指数以来,人们普遍认为这些仪器得出的值是准确的。然而,最近有研究表明,许多细胞因素,包括细胞变形性的改变,会导致这些自动化仪器对细胞体积的测量不准确。由于细胞血红蛋白浓度和血细胞比容是根据细胞体积的测量值计算得出的,因此细胞体积测定不准确也会影响这些指数的准确性。本研究采用了一种最近开发的基于激光散射的实验性流式细胞术方法,该方法可以独立测量体积和血红蛋白浓度,用于测量密度分级的正常和镰状红细胞、水化和脱水的正常红细胞以及各种病理细胞的MCV和MCHC。我们发现,新方法在较宽的MCV(30至120飞升)和MCHC(27至45克/分升)值范围内,能够准确测量体积和血红蛋白浓度。这与目前可用的方法形成对比,在目前的方法中,血红蛋白浓度值在更有限的范围(27至35克/分升)内能够被准确测量。此外,由于该实验方法独立测量单个红细胞的体积和血红蛋白浓度,它使我们能够生成体积和血红蛋白浓度分布的直方图,并得出体积分布的变异系数和血红蛋白浓度分布的标准差。我们已经能够证明,在病理性红细胞样本中,体积和血红蛋白浓度分布可以相互独立地变化。

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