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A novel method for sample preparation of fresh lung cancer tissue for proteomics analysis by tumor cell enrichment and removal of blood contaminants

机译:通过肿瘤细胞富集和去除血液污染物进行蛋白质组学分析的新鲜肺癌组织样品制备的新方法

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Background In-depth proteomics analyses of tumors are frequently biased by the presence of blood components and stromal contamination, which leads to large experimental variation and decreases the proteome coverage. We have established a reproducible method to prepare freshly collected lung tumors for proteomics analysis, aiming at tumor cell enrichment and reduction of plasma protein contamination. We obtained enriched tumor-cell suspensions (ETS) from six lung cancer cases (two adenocarcinomas, two squamous-cell carcinomas, two large-cell carcinomas) and from two normal lung samples. The cell content of resulting ETS was evaluated with immunocytological stainings and compared with the histologic pattern of the original specimens. By means of a quantitative mass spectrometry-based method we evaluated the reproducibility of the sample preparation protocol and we assessed the proteome coverage by comparing lysates from ETS samples with the direct lysate of corresponding fresh-frozen samples. Results Cytological analyses on cytospin specimens showed that the percentage of tumoral cells in the ETS samples ranged from 20% to 70%. In the normal lung samples the percentage of epithelial cells was less then 10%. The reproducibility of the sample preparation protocol was very good, with coefficient of variation at the peptide level and at the protein level of 13% and 7%, respectively. Proteomics analysis led to the identification of a significantly higher number of proteins in the ETS samples than in the FF samples (244 vs 109, respectively). Albumin and hemoglobin were among the top 5 most abundant proteins identified in the FF samples, showing a high contamination with blood and plasma proteins, whereas ubiquitin and the mitochondrial ATP synthase 5A1 where among the top 5 most abundant proteins in the ETS samples. Conclusion The method is feasible and reproducible. We could obtain a fair enrichment of cells but the major benefit of the method was an effective removal of contaminants from red blood cells and plasma proteins resulting in larger proteome coverage compared to the direct lysis of frozen samples. This sample preparation method may be successfully implemented for the discovery of lung cancer biomarkers on tissue samples using mass spectrometry-based proteomics.
机译:背景技术肿瘤的深入蛋白质组学分析经常因血液成分和基质污染的存在而产生偏差,这会导致较大的实验差异并降低蛋白质组覆盖率。我们已经建立了一种可重现的方法,以准备用于蛋白质组学分析的新鲜收集的肺部肿瘤,旨在富集肿瘤细胞并减少血浆蛋白污染。我们从六个肺癌病例(两个腺癌,两个鳞状细胞癌,两个大细胞癌)和两个正常肺样本中获得了富集的肿瘤细胞悬液(E​​TS)。用免疫细胞学染色评估所得ETS的细胞含量,并与原始样本的组织学模式进行比较。通过基于定量质谱的方法,我们评估了样品制备方案的可重复性,并通过将ETS样品的裂解物与相应的新鲜冷冻样品的直接裂解物进行比较,评估了蛋白质组覆盖率。结果对细胞纺锤体标本的细胞学分析表明,ETS样品中肿瘤细胞的百分比为20%至70%。在正常的肺样本中,上皮细胞的百分比小于10%。样品制备方案的重现性非常好,在肽水平和蛋白质水平的变异系数分别为13%和7%。蛋白质组学分析导致​​鉴定出的ETS样品中蛋白质的数量明显高于FF样品中的蛋白质(分别为244和109)。白蛋白和血红蛋白是FF样品中确定的前5个最丰富的蛋白质之一,对血液和血浆蛋白的污染程度很高,而泛素和线粒体ATP合酶5A1则是ETS样品中前5个最丰富的蛋白质。结论该方法可行且可重复。我们可以获得大量的细胞富集,但是该方法的主要好处是与直接裂解冷冻样品相比,可以有效去除红细胞和血浆蛋白中的污染物,从而导致更大的蛋白质组覆盖率。使用基于质谱的蛋白质组学,可以成功地实施这种样品制备方法来发现组织样品上的肺癌生物标记物。

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