激光扫描细胞术可以补充流式细胞术DNA分析石蜡包埋的癌症样本:一个典型的情况。

A Fattorossi, A Battaglia, N Maggiano, P Malinconico, L Andreocci, S Mancuso, G Scambia
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引用次数: 0

摘要

石蜡包埋肿瘤样本的档案研究常常因难以获得可靠的二倍体DNA标准而变得复杂。非肿瘤细胞,如炎症细胞和基质细胞,最常发现穿插在肿瘤细胞中,可能是解决这个问题的一种方法。不幸的是,在石蜡包埋的标本中,有一个固有的困难来确定肿瘤细胞。使用非整倍体石蜡包埋乳腺癌样本,我们在这里显示激光扫描细胞仪(LSC)结合流式细胞术可以帮助解决这个问题。按照标准规程,组织被脱烃和再水化,细胞核在暴露于碘化丙啶之前被机械分离。用等分液进行单参数流式细胞分析,将剩余细胞离心到显微镜载玻片上,进行LSC分析。两种方法生成的DNA直方图具有可比性,并且都显示了具有不同DNA含量的细胞群的存在。为了评估这些亚群的性质,我们通过LSC在单细胞水平上对DNA含量和染色质组织进行了相关测量。这使得鉴定出几个核亚群成为可能。然后对载玻片进行Giemsa染色,并通过利用LSC的重新定位能力从形态学上评估这些亚群的性质。炎症细胞和基质细胞、残余二倍体上皮细胞和超二倍体肿瘤细胞——每一个都以DNA含量和染色质组织的特殊坐标模式为特征——可以被阳性识别。二倍体,非肿瘤细胞可以用作DNA倍性的内部标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser scanning cytometry can complement the flow cytometric DNA analysis in paraffin-embedded cancer samples: a paradigmatic case.

Archival studies on paraffin-embedded tumor samples are often complicated by difficulty obtaining a reliable diploid DNA standard. Nontumor cells, e.g., inflammatory and stromal cells, most often found interspersed among tumor cells, would represent a solution to this problem. Unfortunately, there is an inherent difficulty to positively identifying tumor cells in paraffin-embedded specimens. Using an aneuploid paraffin-embedded breast cancer sample, we show here that laser scanning cytometer (LSC) in conjunction with flow cytometry can help to address this issue. Following standard protocols, the tissue was deparaffinized and rehydrated, and the nuclei mechanically isolated before being exposed to propidium iodide. An aliquot served for single-parameter flow cytometric analysis, and the remaining cells were cytocentrifuged onto a microscope slide and LSC analysis was performed. The DNA histogram profiles generated by the two approaches were comparable and both showed the presence of cell populations with different DNA content. To assess the nature of these subsets, we performed a correlated measurement of DNA content and chromatin organization at the single-cell level by LSC. This allowed the identification of several subsets of nuclei. Slides were then stained with Giemsa and the nature of these subsets was assessed morphologically by exploiting the relocating capability of LSC. Inflammatory and stromal cells, residual diploid epithelial cells, and hyperdiploid tumor cells-each characterized by a peculiar coordinate pattern of DNA content and chromatin organization-could be positively identified. Diploid, nontumor cells can then be used as an internal standard for DNA ploidy.

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