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ER 阳性、HER2 阳性和三阴性乳腺癌中的凋亡、增殖、免疫功能和耐药相关基因。

Apoptosis-, proliferation, immune function-, and drug resistance- related genes in ER positive, HER2 positive and triple negative breast cancer.

机构信息

Department of Surgical Oncology, Cancer Center, Copernicus Memorial Hospital, Lodz, Poland.

出版信息

Neoplasma. 2012;59(4):424-32. doi: 10.4149/neo_2012_055.

Abstract

The aim of our study was to examine an association between gene expression assessed using a 23-gene microarray and receptor status of breast cancer samples categorized as ER positive, HER2 positive and triple negative subtypes. The ER positive cohort was subsequently divided into Luminal A, Luminal B HER2 negative and Luminal B HER2 positive subtypes. Core- needle biopsies were collected from 78 female patients with inoperable locally advanced breast cancer or resectable tumors suitable for downstaging, before any treatment. Expressions of 23 genes were determined by means of TagMan Low Density Arrays. Analysis of variance was used to select genes with discriminatory potential between receptor subtypes. We introduced a correction for false discovery rates (presented as q values) due to testing multiple hypothesis. Pairwise post-hoc comparisons of receptor subtypes were performed using Tukey 's HSD test. Five genes out of a 23-gene microarray differed significantly in relation to breast cancer receptor-based subtypes. Among these five genes, we identified: BCL2 (p=0.0002, q=0.0009), MKI67 (p=0.0037, q=0.0064), IGF1R (p=0.0040, q=0.0064), FOXC1 (p=0.0113, q=0.0135) and IRF1 (p=0.0435, q=0.0416) as ones showing ER positive, HER2 positive and triple negative -subtype specific expression profiles. When incorporating Luminal A, Luminal B HER2 negative, Luminal B HER2 positive subtypes into analysis, four genes: BCL2 (p=0.0006, q=0.0034), MKI67 (p=0.0078, q=0.0198), FOXC1 (p=0.0102, q=0.0198) and IGF1R (p=0.0174, q=0.0254) were selected. Elevated levels of IGF1R and BCL2 were significantly linked with Luminal A subtype. Triple negative breast cancer subtype was associated with higher expression of IRF1, FOXC1 and MKI67. In HER2 positive cohort lower expression of all five analyzed genes was noted.

摘要

本研究旨在探讨使用 23 基因微阵列评估基因表达与乳腺癌样本受体状态之间的关联,这些样本分为 ER 阳性、HER2 阳性和三阴性亚型。随后,将 ER 阳性队列分为 Luminal A、Luminal B HER2 阴性和 Luminal B HER2 阳性亚型。在接受任何治疗之前,从 78 名患有局部晚期不可手术或可切除肿瘤适合降期的女性患者的核心针活检中收集样本。通过 TagMan 低密度阵列确定 23 个基因的表达。方差分析用于选择具有受体亚型鉴别潜力的基因。由于对多个假设进行了测试,我们引入了假发现率(以 q 值表示)的校正。使用 Tukey 的 HSD 检验对受体亚型进行了两两事后比较。在基于乳腺癌受体的亚型中,23 基因微阵列中的 5 个基因差异显著。在这 5 个基因中,我们鉴定出:BCL2(p=0.0002,q=0.0009)、MKI67(p=0.0037,q=0.0064)、IGF1R(p=0.0040,q=0.0064)、FOXC1(p=0.0113,q=0.0135)和 IRF1(p=0.0435,q=0.0416),它们显示出 ER 阳性、HER2 阳性和三阴性亚型特异性表达谱。当将 Luminal A、Luminal B HER2 阴性、Luminal B HER2 阳性亚型纳入分析时,有 4 个基因:BCL2(p=0.0006,q=0.0034)、MKI67(p=0.0078,q=0.0198)、FOXC1(p=0.0102,q=0.0198)和 IGF1R(p=0.0174,q=0.0254)被选中。IGF1R 和 BCL2 水平升高与 Luminal A 亚型显著相关。三阴性乳腺癌亚型与 IRF1、FOXC1 和 MKI67 的高表达相关。在 HER2 阳性队列中,所有 5 个分析基因的表达均较低。

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