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用于微核试验的流式细胞术分析性能——一种使用疟疾感染细胞与正常小鼠外周血的系列稀释液的重建模型。

Performance of flow cytometric analysis for the micronucleus assay--a reconstruction model using serial dilutions of malaria-infected cells with normal mouse peripheral blood.

作者信息

Torous Dorothea, Asano Norihide, Tometsko Carol, Sugunan Siva, Dertinger Stephen, Morita Takeshi, Hayashi Makoto

机构信息

Litron Laboratories, 200 Canal View Boulevard, Rochester, NY 14623, USA.

出版信息

Mutagenesis. 2006 Jan;21(1):11-3. doi: 10.1093/mutage/gei053. Epub 2005 Sep 27.

Abstract

To confirm the performance and statistical power of a flow cytometric method for scoring micronucleated erythrocytes, reconstruction experiments were performed. For these investigations, peripheral blood erythrocytes from untreated mice, with a micronucleated erythrocyte frequency of approximately 0.1% were combined with known quantities of Plasmodium berghei (malaria) infected mouse erythrocytes. These cells had an infected erythrocyte frequency of approximately 0.7%, and mimic the DNA content of micronuclei (MN). For an initial experiment, samples with a range of MN/malaria (Mal) content were constructed and analysed in triplicate by flow cytometry until 2000, 20,000 and 200,000 total erythrocytes were acquired. In a second experiment, each specimen was analysed in triplicate until 2000, 20,000, 200,000 and 1,000,000 erythrocytes were acquired. As expected, the sensitivity of the assay to detect small changes in rare erythrocyte sub-population frequencies was directly related to the number of cells analysed. For example, when 2000 cells were scored, increases in MN/Mal frequencies of 3.9- or 2.7-fold were detected as statistically significant. When 200,000 cells were analysed, a 1.2-fold increase was detected. These data have implications for the experimental design and interpretation of micronucleus assays that are based on automated scoring procedures, since previously unattainable numbers of cells can now be readily scored.

摘要

为了确认流式细胞术检测微核红细胞的性能和统计功效,进行了重建实验。在这些研究中,将未处理小鼠外周血红细胞(微核红细胞频率约为0.1%)与已知数量的感染伯氏疟原虫(疟疾)的小鼠红细胞混合。这些细胞的感染红细胞频率约为0.7%,模拟微核(MN)的DNA含量。在初步实验中,构建了一系列具有不同MN/疟疾(Mal)含量的样本,并通过流式细胞术一式三份进行分析,直至获取2000、20000和200000个总红细胞。在第二个实验中,每个样本一式三份进行分析,直至获取2000、20000、200000和1000000个红细胞。正如预期的那样,该检测方法检测稀有红细胞亚群频率微小变化的灵敏度与分析的细胞数量直接相关。例如,当对2000个细胞进行计数时,MN/Mal频率增加3.9倍或2.7倍被检测为具有统计学意义。当分析200000个细胞时,检测到增加了1.2倍。这些数据对基于自动评分程序的微核试验的实验设计和解释具有启示意义,因为现在可以轻松对以前无法达到数量的细胞进行评分。

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