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Reliable Entity Subtyping in Non-small Cell Lung Cancer by Matrix-assisted Laser Desorption/Ionization Imaging Mass Spectrometry on Formalin-fixed Paraffin-embedded Tissue Specimens

机译:通过基质辅助激光解吸/电离成像质谱法在福尔马林固定的石蜡包埋的组织标本上通过基质辅助激光解吸/电离成像质谱法可靠实体亚型

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摘要

Histopathological subtyping of non-small cell lung cancer (NSCLC) into adenocarcinoma (ADC), and squamous cell carcinoma (SqCC) is of utmost relevance for treatment stratification. However, current immunohistochemistry (IHC) based typing approaches on biopsies are imperfect, therefore novel analytical methods for reliable subtyping are needed. We analyzed formalin-fixed paraffin-embedded tissue cores of NSCLC by Matrix-assisted laser desorption/ionization (MALDI) imaging on tissue microarrays to identify and validate discriminating MALDI imaging profiles for NSCLC subtyping. 110 ADC and 98 SqCC were used to train a Linear Discriminant Analysis (LDA) model. Results were validated on a separate set of 58 ADC and 60 SqCC. Selected differentially expressed proteins were identified by tandem mass spectrometry and validated by IHC. The LDA classification model incorporated 339 m/z values. In the validation cohort, in 117 cases (99.1%) MALDI classification on tissue cores was in accordance with the pathological diagnosis made on resection specimen. Overall, three cases in the combined cohorts were discordant, after reevaluation two were initially misclassified by pathology whereas one was classified incorrectly by MALDI. Identification of differentially expressed peptides detected well-known IHC discriminators (CK5, CK7), but also less well known differentially expressed proteins (CK15, HSP27). In conclusion, MALDI imaging on NSCLC tissue cores as small biopsy equivalents is capable to discriminate lung ADC and SqCC with a very high accuracy. In addition, replacing multislide IHC by an one-slide MALDI approach may also save tissue for subsequent predictive molecular testing. We therefore advocate to pursue routine diagnostic implementation strategies for MALDI imaging in solid tumor typing.
机译:非小细胞肺癌(NSCLC)的组织病理学亚型进入腺癌(ADC)和鳞状细胞癌(SQCC)是对治疗分层的最大相关性。然而,目前的免疫组织化学(IHC)在活组织检查中的键检方法是不完美的,因此需要用于可靠亚型的新型分析方法。通过基质辅助激光解吸/电离(MALDI)成像在组织微阵列上分析了NSCLC的福尔马林固定的石蜡嵌入式组织核,以识别和验证用于NSCLC亚型的MALDI成像谱。 110 ADC和98 SQCC用于培训线性判别分析(LDA)模型。结果在单独的58个ADC和60 SQCC上验证。通过串联质谱法鉴定出选定的差异表达的蛋白质并通过IHC验证。 LDA分类模型包含339个M / z值。在验证队列中,117例(99.1%)组织核心的MALDI分类符合在切除标本的病理诊断。总体而言,结合群组中的三种病例不和谐,重新评估两者最初被病理学错误分类,而一个人被MALDI归类为错误。鉴定差异表达肽检测了已知的IHC鉴别器(CK5,CK7),但也较少已知的差异表达蛋白质(CK15,HSP27)。总之,随着小型活检等同物的NSCLC组织核上的MALDI成像能够以非常高的精度辨别肺ADC和SQCC。此外,通过单个滑动MALDI方法更换多环IHC,也可以保存组织以进行后续预测分子测试。因此,我们主张在实体肿瘤打字中追求MALDI成像的常规诊断实施策略。

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