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通过流式细胞术分析微核细胞。2. 评估高速评分的准确性。

Analysis of micronucleated cells by flow cytometry. 2. Evaluating the accuracy of high-speed scoring.

作者信息

Tometsko A M, Dertinger S D, Torous D K

机构信息

Litron Laboratories, Rochester, NY 14620.

出版信息

Mutat Res. 1993 Oct;292(2):137-43. doi: 10.1016/0165-1161(93)90141-l.

Abstract

Micronucleated blood cells--whether generated spontaneously or by clastogen treatment--are present in the blood and bone marrow as rare events. Historically they have been scored manually by microscopic inspection which is labor-intensive and tedious. It has been recognized by investigators that a need exists for an automated method which can accurately, objectively and quantitatively score rare micronucleated cells. In order to improve assay statistics more cells must be processed, making high-speed scoring an important objective of any automated procedure. Flow cytometry can provide the means to quantitatively analyze micronucleated cells at high speeds and with great accuracy once the chemical, biological and instrumentation conditions are optimized. Recent literature suggests that noise and fidelity of the data, as well as the sensitivity of present flow cytometers, are major obstacles that still must be overcome. Experiments are described herein which demonstrate that flow cytometry is able to score micronucleated cells under conditions where noise levels are low, and the fidelity and accuracy are high. In addition, the accuracy of scoring rare events is maintained at high speeds (e.g. 1,000,000 cells/min). A major emphasis of this manuscript is to demonstrate the means for evaluating the accuracy and sensitivity of the flow cytometer in scoring rare events. Both computer simulation and reconstruction experiments were used to gauge scoring accuracy and guided optimization experiments. These experiments demonstrate that when optimum conditions are used in conjunction with a suitable flow cytometer, it is possible to score micronucleated cells at high speeds with great precision.

摘要

微核血细胞——无论是自发产生的还是经致断裂剂处理产生的——在血液和骨髓中都是罕见的。从历史上看,它们一直通过显微镜检查进行人工计数,这既费力又繁琐。研究人员已经认识到,需要一种能够准确、客观和定量地对罕见微核细胞进行计数的自动化方法。为了改善检测统计结果,必须处理更多的细胞,这使得高速计数成为任何自动化程序的一个重要目标。一旦化学、生物学和仪器条件得到优化,流式细胞术可以提供高速且高精度地定量分析微核细胞的方法。最近的文献表明,数据的噪声和保真度以及现有流式细胞仪的灵敏度仍然是必须克服的主要障碍。本文描述的实验表明,流式细胞术能够在噪声水平低、保真度和准确性高的条件下对微核细胞进行计数。此外,在高速(例如每分钟100万个细胞)下仍能保持对罕见事件计数的准确性。本手稿的一个主要重点是展示评估流式细胞仪在对罕见事件进行计数时的准确性和灵敏度的方法。计算机模拟和重建实验都被用于评估计数准确性并指导优化实验。这些实验表明,当使用最佳条件并结合合适的流式细胞仪时,就有可能高精度地高速对微核细胞进行计数。

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