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Quantitative fish determination of chromosome 3 arm imbalances in lung tumors by automated image cytometry

机译:用自动图像细胞仪定量测定鱼的3号染色体染色体臂不平衡

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Background:Clonal heterogeneity is a major difficulty in the analysis of chromosome rearrangements within tumor tissue. Using [i]in situ[/i] hybridization, a cell-to-cell analysis can be performed and should allow a better understanding of the genetic process. In addition, detection of pre-neoplastic lesions with only a few cells involved may improve the diagnosis of such lesions and their precocious treatment.Material/Methods: Automated analysis was performed on tissue sections with our previously described two-color fluorescence [i]in situ[/i] hybridization-based method for quantitative determination of chromosome arm imbalance. The imbalance between the long and short arms of chromosome 3 was determined in 24 cases of non-small-cell and small-cell lung cancers in which only small snap-frozen sections were used, allowing other simultaneous molecular analyses, such as TP53 gene mutation detection.Results: Specifically developed software allowed localization of each nucleus within the section with regard to its chromosome imbalance and to reconstitute a multi-clonal panel within an apparently homogeneous sample. In some cases, discrepancies in the imbalance values were observed between the biopsy and the tumor obtained after surgery from the same patient.Conclusions: The discrepancies observed between biopsies and tumors, likely linked to the samples’ heterogeneity, demonstrate the necessity to analyze tissue sections collected at various locations. The fully automated approach developed in this study rendered such investigations possible.
机译:背景:克隆异质性是分析肿瘤组织内染色体重排的主要困难。使用[i]原位杂交,可以进行细胞间分析,并应更好地了解遗传过程。另外,仅用少量细胞参与的肿瘤前病变的检测可以改善此类病变的诊断及其早熟治疗。材料/方法:使用我们先前描述的双色荧光[i]在组织切片上进行自动分析基于原位杂交的定量测定染色体臂失衡的方法。在仅使用小速冻切片的非小细胞和小细胞肺癌的24例病例中确定了3号染色体长臂和短臂之间的不平衡,从而可以同时进行其他分子分析,例如TP53基因突变检测。结果:专门开发的软件允许就切片中每个核的染色体失衡情况进行定位,并在表面上均一的样品中重建多克隆板。在某些情况下,在同一患者的活检组织和手术后的肿瘤之间观察到不平衡值的差异。结论:活检组织和肿瘤之间的差异可能与样品的异质性有关,表明分析组织切片的必要性收集在各个位置。本研究中开发的全自动方法使此类研究成为可能。

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