靶向增强全基因组测序(TE-WGS)显示其临床有效性等同于市售靶向肿瘤学样本。

IF 4.1 2区 医学 Q2 ONCOLOGY
Sangmoon Lee, Jin Roh, Jun Sung Park, Islam Oguz Tuncay, Wonchul Lee, Jung-Ah Kim, Brian Baek-Lok Oh, Jong-Yeon Shin, Jeong Seok Lee, Young Seok Ju, Ryul Kim, Seongyeol Park, Jaemo Koo, Hansol Park, Joonoh Lim, Erin Connolly-Strong, Tae-Hwan Kim, Yong Won Choi, Mi Sun Ahn, Hyun Woo Lee, Seokhwi Kim, Jang-Hee Kim, Minsuk Kwon
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引用次数: 0

摘要

目的:癌症对全球健康构成重大挑战,需要精确的基因组检测来制定个体化治疗策略。靶向面板测序(TPS)改善了个性化肿瘤学,但往往缺乏对关键癌症改变的全面覆盖。全基因组测序(WGS)弥补了这一不足,提供了广泛的基因组检测。本研究证明了 WGS 的医疗潜力:本研究评估了靶向增强 WGS(TE-WGS),这是一种对癌症和匹配的正常组织进行测序的临床级 WGS 方法。49例不同实体癌类型的患者同时接受了TE-WGS和TruSight Oncology 500(TSO500)(主流TPS方法之一)的测序:结果:TE-WGS 检测到了 TSO500 报告的所有变异(100%,498/498)。在 TE-WGS 和 TSO500 之间观察到了变异等位基因比例 (VAF) 的高度相关性(r=0.978)。值得注意的是,223 个变异等位基因(44.8%)完全是通过 TE-WGS 在外周血中发现的,这表明这些变异等位基因来源于种系。相反,其余的 275 个变异子集(55.2%)在外周血中没有被 TE-WGS 检测到,表明它们是真正的体细胞变异。此外,TE-WGS 还能提供准确的拷贝数图谱、融合基因、微卫星不稳定性(MSI)和同源重组缺陷(HRD)评分,这些对于临床决策至关重要:TE-WGS是个性化肿瘤学的一种综合方法,与TSO500的关键生物标记物检测功能相匹配。它能独特地识别种系变异和基因组不稳定性标记,提供额外的临床行动。它的适应性和成本效益凸显了其临床实用性,使 TE-WGS 成为个性化肿瘤治疗的重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Target-Enhanced Whole-Genome Sequencing (TE-WGS) Shows Clinical Validity Equivalent to Commercially Available Targeted Oncology Panel.

Purpose: Cancer poses a significant global health challenge, demanding precise genomic testing for individualized treatment strategies. Targeted-panel sequencing (TPS) has improved personalized oncology but often lacks comprehensive coverage of crucial cancer alterations. Whole-genome sequencing (WGS) addresses this gap, offering extensive genomic testing. This study demonstrates the medical potential of WGS.

Materials and methods: This study evaluates target-enhanced WGS (TE-WGS), a clinical-grade WGS method sequencing both cancer and matched normal tissues. Forty-nine patients with various solid cancer types underwent both TE-WGS and TruSight Oncology 500 (TSO500), one of the mainstream TPS approaches.

Results: TE-WGS detected all variants reported by TSO500 (100%, 498/498). A high correlation in variant allele fractions (VAF) was observed between TE-WGS and TSO500 (r=0.978). Notably, 223 variants (44.8%) within the common set were discerned exclusively by TE-WGS in peripheral blood, suggesting their germline origin. Conversely, the remaining subset of 275 variants (55.2%) were not detected in peripheral blood using the TE-WGS, signifying them as bona fide somatic variants. Further, TE-WGS provided accurate copy number profiles, fusion genes, microsatellite instability (MSI), and homologous-recombination deficiency (HRD) scores, which were essential for clinical decision-making.

Conclusion: TE-WGS is a comprehensive approach in personalized oncology, matching TSO500's key biomarker detection capabilities. It uniquely identifies germline variants and genomic instability markers, offering additional clinical actions. Its adaptability and cost-effectiveness underscore its clinical utility, making TE-WGS a valuable tool in personalized cancer treatment.

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来源期刊
CiteScore
8.00
自引率
2.20%
发文量
126
审稿时长
>12 weeks
期刊介绍: Cancer Research and Treatment is a peer-reviewed open access publication of the Korean Cancer Association. It is published quarterly, one volume per year. Abbreviated title is Cancer Res Treat. It accepts manuscripts relevant to experimental and clinical cancer research. Subjects include carcinogenesis, tumor biology, molecular oncology, cancer genetics, tumor immunology, epidemiology, predictive markers and cancer prevention, pathology, cancer diagnosis, screening and therapies including chemotherapy, surgery, radiation therapy, immunotherapy, gene therapy, multimodality treatment and palliative care.
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