Tapia Coya, Schraml Peter, Simon Ronald, Al-Kuraya Khawla S, Maurer Robert, Mirlacher Martina, Novotny Hedvika, Spichtin Hanspeter, Mihatsch Michael J, Sauter Guido
Institute of Pathology, University of Basel, Basel, Switzerland.
Int J Oncol. 2004 Dec;25(6):1551-7.
Due to the central role in predicting response to herceptin and possibly also other anticancer drugs, accurate and reproducible detection of the HER2 status is important. Fluorescence in situ hybridization (FISH) and immunohistochemistry (IHC) are the most commonly used methods for HER2 analysis. It is a disadvantage of FISH that a fraction of cases remain not interpretable probably due to suboptimal tissue handling before analysis. To investigate a possible influence of tissue damage on the results of HER2 IHC we compared the HER2 IHC results obtained in tumors with and without interpretable FISH in a breast cancer tissue microarray. The HER2 IHC results differed greatly between 1551 tumors with interpretable HER2 FISH signals and 405 breast cancers showing no FISH signals. FISH informative tumors had an IHC score of 3+ in 12.6%, 2+ in 3% and 1+ in 9.2% of cases. FISH non-informative tumors showed significantly lower IHC scores (p < 0.0001). They were IHC 3+ in 3.9%, 2+ in 3.7% and 1+ in 4.4% of cases. Overall, the data show that not only FISH but also IHC results are dependent on good tissue quality for successful analysis. Poor tissue quality can be easily identified in FISH analyses because of a lack of hybridization signals. Inappropriate tissue handling is more dangerous in IHC because an artificial lack of staining can be regarded as 'negative' result.
由于在预测对赫赛汀以及可能对其他抗癌药物的反应中起核心作用,准确且可重复地检测HER2状态非常重要。荧光原位杂交(FISH)和免疫组织化学(IHC)是最常用于HER2分析的方法。FISH的一个缺点是,部分病例可能由于分析前组织处理欠佳而仍无法解读。为了研究组织损伤对HER2 IHC结果的可能影响,我们在乳腺癌组织芯片中比较了在有可解读FISH结果和无可解读FISH结果的肿瘤中获得的HER2 IHC结果。在1551例有可解读HER2 FISH信号的肿瘤和405例无FISH信号的乳腺癌之间,HER2 IHC结果差异很大。FISH结果可提供信息的肿瘤中,12.6%的病例IHC评分为3+,3%为2+,9.2%为1+。FISH结果不可提供信息的肿瘤显示出显著更低的IHC评分(p < 0.0001)。它们在3.9%的病例中为IHC 3+,3.7%为2+,4.4%为1+。总体而言,数据表明,不仅FISH,而且IHC结果也依赖于良好的组织质量才能成功分析。在FISH分析中,由于缺乏杂交信号,组织质量差很容易识别。在IHC中,不适当的组织处理更危险,因为人为的染色缺失可能被视为“阴性”结果。