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基质辅助激光解吸电离质谱成像后进行数字PCR以结合蛋白质组图谱分析与肺腺癌中激活突变的鉴定

Digital PCR After MALDI-Mass Spectrometry Imaging to Combine Proteomic Mapping and Identification of Activating Mutations in Pulmonary Adenocarcinoma.

作者信息

Kazdal Daniel, Longuespée Rémi, Dietz Steffen, Casadonte Rita, Schwamborn Kristina, Volckmar Anna-Lena, Kriegsmann Jörg, Kriegsmann Katharina, Fresnais Margaux, Stenzinger Albrecht, Sültmann Holger, Warth Arne, Kriegsmann Mark

机构信息

Institute of Pathology, University Hospital Heidelberg, 69120 Heidelberg, Germany.

Member of the Translational Lung Research Center (TLRC) Heidelberg, German Center for Lung Research (DZL), 69120 Heidelberg, Germany.

出版信息

Proteomics Clin Appl. 2019 Jan;13(1):e1800034. doi: 10.1002/prca.201800034. Epub 2018 Oct 15.

DOI:10.1002/prca.201800034
PMID:30216696
Abstract

PURPOSE

Matrix assisted laser desorption/ionization time-of-flight mass spectrometry imaging (MALDI-MSI) is a powerful tool to analyze the spatial distribution of peptides in tissues. Digital PCR (dPCR) is a method to reliably detect genetic mutations. Biopsy material is often limited due to minimally invasive techniques, but information on diagnosis, prognosis, and prediction is required for subsequent clinical decision making. Thus, saving tissue material during diagnostic workup is highly warranted for best patient care. The possibility to combine proteomic analysis by MALDI-MSI and mutational analysis by dPCR from the same tissue section is evaluated.

EXPERIMENTAL DESIGN

Ten 0.5 × 0.5 cm formalin-fixed paraffin embedded tissue samples of pulmonary adenocarcinomas with known EGFR or KRAS mutations are analyzed by MALDI-MSI. Subsequently, DNA is extracted from the analyzed tissue material and tested for the respective driver mutation by dPCR.

RESULTS

Detection of driver gene mutations after MALDI MSI analysis is successful in all analyzed samples. Determined mutant allele frequencies are in good agreement with values assessed from untreated serial tissue sections with a mean absolute deviation of 0.16.

CONCLUSION AND CLINICAL RELEVANCE

It has been demonstrated that MALDI-MSI can be combined with genetic analysis, like dPCR. Workflows enabling the subsequent analysis of proteomic and genetic markers are particularly promising for the analysis of limited sample material such as biopsy specimen.

摘要

目的

基质辅助激光解吸/电离飞行时间质谱成像(MALDI-MSI)是分析组织中肽段空间分布的有力工具。数字PCR(dPCR)是一种可靠检测基因突变的方法。由于微创技术,活检材料往往有限,但后续临床决策需要诊断、预后和预测信息。因此,为了实现最佳的患者护理,在诊断检查过程中节省组织材料是非常必要的。我们评估了将来自同一组织切片的MALDI-MSI蛋白质组学分析与dPCR突变分析相结合的可能性。

实验设计

对10个已知EGFR或KRAS突变的肺腺癌福尔马林固定石蜡包埋组织样本(0.5×0.5 cm)进行MALDI-MSI分析。随后,从分析后的组织材料中提取DNA,并通过dPCR检测相应的驱动基因突变。

结果

在所有分析样本中,MALDI MSI分析后均成功检测到驱动基因突变。确定的突变等位基因频率与从未经处理的连续组织切片评估的值高度一致,平均绝对偏差为0.16。

结论及临床意义

已证明MALDI-MSI可与dPCR等基因分析相结合。能够对蛋白质组学和遗传标记进行后续分析的工作流程对于分析活检标本等有限样本材料特别有前景。

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