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利用仅肿瘤数据改进基于二代测序的微卫星不稳定性检测

Improved NGS-based detection of microsatellite instability using tumor-only data.

作者信息

Marques Ana Claudia, Ferraro-Peyret Carole, Michaud Frederic, Song Lin, Smith Ewan, Fabre Guillaume, Willig Adrian, Wong Melissa M L, Xing Xiaobin, Chong Chloe, Brayer Marion, Fenouil Tanguy, Hervieu Valérie, Bancel Brigitte, Devouassoux Mojgan, Balme Brigitte, Meyronet David, Menu Philippe, Lopez Jonathan, Xu Zhenyu

机构信息

SOPHiA GENETICS, Saint-Sulpice, Switzerland.

Cancer Research Centre of Lyon, INSERM 1052, Centre National de la Recherche Scientifique (CNRS) 5286, University of Lyon, Lyon, France.

出版信息

Front Oncol. 2022 Nov 17;12:969238. doi: 10.3389/fonc.2022.969238. eCollection 2022.

Abstract

Microsatellite instability (MSI) is a molecular signature of mismatch repair deficiency (dMMR), a predictive marker of immune checkpoint inhibitor therapy response. Despite its recognized pan-cancer value, most methods only support detection of this signature in colorectal cancer. In addition to the tissue-specific differences that impact the sensitivity of MSI detection in other tissues, the performance of most methods is also affected by patient ethnicity, tumor content, and other sample-specific properties. These limitations are particularly important when only tumor samples are available and restrict the performance and adoption of MSI testing. Here we introduce MSIdetect, a novel solution for NGS-based MSI detection. MSIdetect models the impact of indel burden and tumor content on read coverage at a set of homopolymer regions that we found are minimally impacted by sample-specific factors. We validated MSIdetect in 139 Formalin-Fixed Paraffin-Embedded (FFPE) clinical samples from colorectal and endometrial cancer as well as other more challenging tumor types, such as glioma or sebaceous adenoma or carcinoma. Based on analysis of these samples, MSIdetect displays 100% specificity and 96.3% sensitivity. Limit of detection analysis supports that MSIdetect is sensitive even in samples with relatively low tumor content and limited microsatellite instability. Finally, the results obtained using MSIdetect in tumor-only data correlate well (R=0.988) with what is obtained using tumor-normal matched pairs, demonstrating that the solution addresses the challenges posed by MSI detection from tumor-only data. The accuracy of MSI detection by MSIdetect in different cancer types coupled with the flexibility afforded by NGS-based testing will support the adoption of MSI testing in the clinical setting and increase the number of patients identified that are likely to benefit from immune checkpoint inhibitor therapy.

摘要

微卫星不稳定性(MSI)是错配修复缺陷(dMMR)的分子特征,是免疫检查点抑制剂治疗反应的预测标志物。尽管其具有公认的泛癌价值,但大多数方法仅支持在结直肠癌中检测此特征。除了影响其他组织中MSI检测敏感性的组织特异性差异外,大多数方法的性能还受患者种族、肿瘤含量和其他样本特异性属性的影响。当仅可获得肿瘤样本时,这些限制尤为重要,并限制了MSI检测的性能和应用。在此,我们介绍MSIdetect,一种基于二代测序(NGS)的MSI检测新方法。MSIdetect对插入缺失负担和肿瘤含量对一组同聚物区域的读数覆盖的影响进行建模,我们发现这些区域受样本特异性因素的影响最小。我们在139份来自结直肠癌和子宫内膜癌以及其他更具挑战性的肿瘤类型(如神经胶质瘤、皮脂腺腺瘤或癌)的福尔马林固定石蜡包埋(FFPE)临床样本中验证了MSIdetect。基于对这些样本的分析,MSIdetect显示出100%的特异性和96.3%的敏感性。检测限分析表明,即使在肿瘤含量相对较低且微卫星不稳定性有限的样本中,MSIdetect也很敏感。最后,在仅肿瘤数据中使用MSIdetect获得的结果与使用肿瘤-正常匹配对获得的结果相关性良好(R=0.988),表明该方法解决了仅从肿瘤数据进行MSI检测所带来的挑战。MSIdetect在不同癌症类型中进行MSI检测的准确性以及基于NGS检测所提供的灵活性,将支持在临床环境中采用MSI检测,并增加被识别出可能从免疫检查点抑制剂治疗中受益的患者数量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d11/9714634/5b6f40143d0e/fonc-12-969238-g001.jpg

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