Annaratone Laura, Simonetti Michele, Wernersson Erik, Marchiò Caterina, Garnerone Silvano, Scalzo Maria Stella, Bienko Magda, Chiarle Roberto, Sapino Anna, Crosetto Nicola
Department of Medical Sciences, University of Turin, Turin, Italy.
Department of Medical Biochemistry and Biophysics, Science for Life Laboratory, Division of Translational Medicine and Chemical Biology, Karolinska Institutet, Stockholm, Sweden.
Oncotarget. 2017 Mar 21;8(12):18680-18698. doi: 10.18632/oncotarget.15727.
Intra-tumor heterogeneity is a pervasive property of human cancers that poses a major clinical challenge. Here, we describe the characterization, at the transcriptional level, of the intra-tumor topography of two prominent breast cancer biomarkers and drug targets, epidermal growth factor receptor 2 (HER2) and estrogen receptor 1 (ER) in 49 archival breast cancer samples. We developed a protocol for single-molecule RNA FISH in formalin-fixed, paraffin-embedded tissue sections (FFPE-smFISH), which enabled us to simultaneously detect and perform absolute quantification of HER2 and ER mature transcripts in single cells and multiple tumor regions. We benchmarked our method with standard diagnostic techniques, demonstrating that FFPE-smFISH is able to correctly classify breast cancers into well-established molecular subgroups. By counting transcripts in thousands of single cells, we identified different expression modes and levels of inter-cellular variability. In samples expressing both HER2 and ER, many cells co-expressed both genes, although expression levels were typically uncorrelated. Finally, we applied diversity metrics from the field of ecology to assess the intra-tumor topography of HER2 and ER gene expression, revealing that the spatial distribution of these key biomarkers can vary substantially even among breast cancers of the same subtype. Our results demonstrate that FFPE-smFISH is a reliable diagnostic assay and a powerful method for quantification of intra-tumor transcriptional heterogeneity of selected biomarkers in clinical samples.
肿瘤内异质性是人类癌症普遍存在的一种特性,它构成了一项重大的临床挑战。在此,我们描述了在49份存档乳腺癌样本中,对两种重要的乳腺癌生物标志物及药物靶点——表皮生长因子受体2(HER2)和雌激素受体1(ER)的肿瘤内拓扑结构进行转录水平的表征。我们开发了一种用于福尔马林固定、石蜡包埋组织切片(FFPE-smFISH)的单分子RNA荧光原位杂交方案,这使我们能够在单细胞和多个肿瘤区域同时检测并对HER2和ER成熟转录本进行绝对定量。我们用标准诊断技术对我们的方法进行了基准测试,证明FFPE-smFISH能够将乳腺癌正确分类为公认的分子亚组。通过对数千个单细胞中的转录本进行计数,我们确定了不同的表达模式和细胞间变异性水平。在同时表达HER2和ER的样本中,许多细胞同时表达这两种基因,尽管表达水平通常不相关。最后,我们应用生态学领域的多样性指标来评估HER2和ER基因表达的肿瘤内拓扑结构,发现即使在同一亚型的乳腺癌中,这些关键生物标志物的空间分布也可能有很大差异。我们的结果表明,FFPE-smFISH是一种可靠的诊断检测方法,也是一种用于定量临床样本中所选生物标志物肿瘤内转录异质性的强大方法。