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联合检测方法用于检测平滑肌肉瘤循环肿瘤 DNA 中的不同类型改变。

Combination Approach for Detecting Different Types of Alterations in Circulating Tumor DNA in Leiomyosarcoma.

机构信息

Department of Pathology, Stanford University School of Medicine, Stanford, California.

Institute for Stem Cell Biology and Regenerative Medicine, Stanford University, Stanford, California.

出版信息

Clin Cancer Res. 2018 Jun 1;24(11):2688-2699. doi: 10.1158/1078-0432.CCR-17-3704. Epub 2018 Feb 20.

Abstract

The clinical utility of circulating tumor DNA (ctDNA) monitoring has been shown in tumors that harbor highly recurrent mutations. Leiomyosarcoma represents a type of tumor with a wide spectrum of heterogeneous genomic abnormalities; thus, targeting hotspot mutations or a narrow genomic region for ctDNA detection may not be practical. Here, we demonstrate a combinatorial approach that integrates different sequencing protocols for the orthogonal detection of single-nucleotide variants (SNV), small indels, and copy-number alterations (CNA) in ctDNA. We employed Cancer Personalized Profiling by deep Sequencing (CAPP-Seq) for the analysis of SNVs and indels, together with a genome-wide interrogation of CNAs by Genome Representation Profiling (GRP). We profiled 28 longitudinal plasma samples and 25 tumor specimens from 7 patients with leiomyosarcoma. We detected ctDNA in 6 of 7 of these patients with >98% specificity for mutant allele fractions down to a level of 0.01%. We show that results from CAPP-Seq and GRP are highly concordant, and the combination of these methods allows for more comprehensive monitoring of ctDNA by profiling a wide spectrum of tumor-specific markers. By analyzing multiple tumor specimens in individual patients obtained from different sites and at different times during treatment, we observed clonal evolution of these tumors that was reflected by ctDNA profiles. Our strategy allows for the comprehensive monitoring of a broad spectrum of tumor-specific markers in plasma. Our approach may be clinically useful not only in leiomyosarcoma but also in other tumor types that lack recurrent genomic alterations. .

摘要

循环肿瘤 DNA(ctDNA)监测的临床实用性已在携带高度复发突变的肿瘤中得到证实。平滑肌肉瘤代表了一类具有广泛异质性基因组异常的肿瘤;因此,针对热点突变或用于 ctDNA 检测的狭窄基因组区域进行靶向可能并不实际。在这里,我们展示了一种组合方法,该方法整合了不同的测序方案,用于 ctDNA 中单核苷酸变异(SNV)、小插入缺失和拷贝数改变(CNA)的正交检测。我们采用深度测序的癌症个体化分析(Cancer Personalized Profiling by deep Sequencing,CAPP-Seq)来分析 SNV 和插入缺失,并结合全基因组拷贝数分析(Genome Representation Profiling,GRP)来分析 CNA。我们对 7 名平滑肌肉瘤患者的 28 个纵向血浆样本和 25 个肿瘤标本进行了分析。我们在 7 名患者中的 6 名患者中检测到了 ctDNA,其对突变等位基因分数的特异性>98%,检测下限为 0.01%。我们表明 CAPP-Seq 和 GRP 的结果高度一致,并且这些方法的组合允许通过对广泛的肿瘤特异性标志物进行分析,更全面地监测 ctDNA。通过分析来自不同部位和治疗过程中不同时间的个体患者的多个肿瘤标本,我们观察到这些肿瘤的克隆进化,这反映在 ctDNA 图谱中。我们的策略允许对血浆中广泛的肿瘤特异性标志物进行全面监测。我们的方法不仅在平滑肌肉瘤中具有临床意义,而且在缺乏复发基因组改变的其他肿瘤类型中也具有临床意义。

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