首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >SAMPLE PREPARATION AND IN SITU HYBRIDIZATION TECHNIQUES FOR AUTOMATED MOLECULAR CYTOGENETIC ANALYSIS OF WHITE BLOOD CELLS
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SAMPLE PREPARATION AND IN SITU HYBRIDIZATION TECHNIQUES FOR AUTOMATED MOLECULAR CYTOGENETIC ANALYSIS OF WHITE BLOOD CELLS

机译:白细胞自动分子细胞遗传学分析的样品制备和原位杂交技术

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With the advent of in situ hybridization techniques for the analysis of chromosome copy number or structure in interphase cells, the diagnostic and prognostic potential of cytogenetics has been augmented considerably. In theory, the strategies for detection of cytogenetically aberrant cells by in sim hybridization ate simple and straightforward. In practice, however, they are fallible, because false classification of hybridization spot number or patterns occurs. When a decision has to be made on molecular cytogenetic normalcy or abnormalcy of a cell sample, the problem of false classification becomes particularly prominent if the fraction of aberrant cells is relatively small. In such mosaic situations, often > 200 cells have to be evaluated to reach a statistical sound figure. The manual enumeration of in situ hybridization spots in many cells in many patient samples is tedious. Assistance in the evaluation process by automation of microscope functions and image analysis techniques is, therefore, strongly indicated, Next to research and development of microscope hardware, camera technology, and image analysis, the optimization of the specimen for the (semi)automated microscopic analysis is essential, since factors such as cell density, thickness, and overlap have dramatic influences on the speed and complexity of the analysis process. Here we describe experiments that have led to a protocol for blood cell specimen that results in microscope preparations that are well suited for automated molecular cytogenetic analysis. (C) 1996 Wiley-Liss, Inc. [References: 13]
机译:随着用于分析相间细胞中染色体拷贝数或结构的原位杂交技术的出现,细胞遗传学的诊断和预后潜力得到了极大的提高。从理论上讲,通过简单杂交检测细胞遗传学异常细胞的策略既简单又直接。然而,在实践中,它们是容易出错的,因为发生了杂交斑点编号或模式的错误分类。当必须决定细胞样品的分子细胞遗传学正常或异常时,如果异常细胞的比例相对较小,则错误分类的问题将变得尤为突出。在这种马赛克情况下,通常必须对200个以上的单元进行评估,以达到统计声级。对许多患者样品中许多细胞中的原位杂交斑点进行人工计数是很繁琐的。因此,强烈建议通过显微镜功能和图像分析技术的自动化来协助评估过程。除了显微镜硬件,相机技术和图像分析的研究与开发之外,(半)自动化显微镜分析的样品优化这是必不可少的,因为诸如细胞密度,厚度和重叠等因素会对分析过程的速度和复杂性产生重大影响。在这里,我们描述了导致血细胞样本协议的实验,这些协议导致了非常适合于自动分子细胞遗传学分析的显微镜制备。 (C)1996 Wiley-Liss,Inc. [参考:13]

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