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FFPE 组织中的分析前变量和磷酸化表位表达:不同冷缺血时间后定量表位评估。

Preanalytical variables and phosphoepitope expression in FFPE tissue: quantitative epitope assessment after variable cold ischemic time.

机构信息

Department of Pathology, School of Medicine, Yale University, New Haven, CT, USA.

Department of Pathology, School of Medicine, University of Rochester, Rochester, NY, USA.

出版信息

Lab Invest. 2015 Mar;95(3):334-41. doi: 10.1038/labinvest.2014.139. Epub 2014 Nov 24.

Abstract

Individualized targeted therapies for cancer patients require accurate and reproducible assessment of biomarkers to be able to plan treatment accordingly. Recent studies have shown highly variable effects of preanalytical variables on gene expression profiling and protein levels of different tissue types. Several publications have described protein degradation of tissue samples as a direct result of delay of formalin fixation of the tissue. Phosphorylated proteins are more labile and epitope degradation can happen within 30 min of cold ischemic time. To address this issue, we evaluated the change in antigenicity of a series of phosphoproteins in paraffin-embedded samples from breast tumors as a function of time to formalin fixation. A tissue microarray consisting of 93 breast cancer specimens with documented time-to-fixation was used to evaluate changes in antigenicity of 12 phosphoepitopes frequently used in research settings as a function of cold ischemic time. Analysis was performed in a quantitative manner using the AQUA technology for quantitative immunofluorescence. For each marker, least squares univariate linear regression was performed and confidence intervals were computed using bootstrapping. The majority of the epitopes tested revealed changes in expression levels with increasing time to formalin fixation. Some phosphorylated proteins, such as phospho-HSP27 and phospho-S6 RP, involved in post-translational modification and stress response pathways increased in expression or phosphorylation levels. Others (like phospho-AKT, phosphor-ERK1/2, phospho-Tyrosine, phospho-MET, and others) are quite labile and loss of antigenicity can be reported within 1-2 h of cold ischemic time. Therefore specimen collection should be closely monitored and subjected to quality control measures to ensure accurate measurement of these epitopes. However, a few phosphoepitopes (like phospho-JAK2 and phospho-ER) are sufficiently robust for routine usage in companion diagnostic testing.

摘要

癌症患者的个体化靶向治疗需要准确和可重复的生物标志物评估,以便能够相应地计划治疗。最近的研究表明,不同组织类型的基因表达谱和蛋白质水平受前分析变量的影响差异很大。有几篇出版物描述了组织样本的蛋白质降解是组织固定延迟的直接结果。磷酸化蛋白质更不稳定,抗原表位降解可能在冷缺血 30 分钟内发生。为了解决这个问题,我们评估了一系列石蜡包埋乳腺癌组织样本中磷酸化蛋白的抗原性随福尔马林固定时间的变化。使用包含有记录固定时间的 93 例乳腺癌标本的组织微阵列来评估 12 个在研究中经常使用的磷酸化表位的抗原性变化作为冷缺血时间的函数。使用 AQUA 技术进行定量免疫荧光分析以定量方式进行分析。对于每个标记物,进行最小二乘单变量线性回归,并使用引导法计算置信区间。测试的大多数表位随着福尔马林固定时间的增加显示出表达水平的变化。一些参与翻译后修饰和应激反应途径的磷酸化蛋白,如磷酸化 HSP27 和磷酸化 S6 RP,表达或磷酸化水平增加。其他的(如磷酸化 AKT、磷酸化 ERK1/2、磷酸化酪氨酸、磷酸化 MET 等)则相当不稳定,在冷缺血 1-2 小时内就会失去抗原性。因此,标本采集应密切监测,并采取质量控制措施,以确保这些表位的准确测量。然而,少数磷酸化表位(如磷酸化 JAK2 和磷酸化 ER)足够稳健,可用于常规伴随诊断测试。

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