PO.CL01.20 · 临床研究

在集成核酸纯化与测序系统上对新一代测序髓系检测进行性能验证

Performance validation of a next generation sequencing myeloid assay on an integrated nucleic acid purification and sequencing system

海报缩略图:在集成核酸纯化与测序系统上对新一代测序髓系检测进行性能验证
编号 3834 展板 18 时间 4/20 02:00–05:00 区域 Section 44 主讲 Amanda Weaver, BA
分会场 Diagnostic Biomarkers 1
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作者与单位 Authors & Affiliations

Amanda Weaver, Ubaradka Sathyanarayana, Hayden Tomazin, Gary Pestano

Biodesix, Inc., Louisville, CO

摘要 Abstract

中文摘要
髓系肿瘤的高度多样性要求对遗传异常进行深入表征,包括单核苷酸变异(SNV)、小片段插入和缺失(INDEL)以及融合和易位,以用于诊断和管理。NGS 能够识别与髓系疾病相关的突变,以诊断特定亚型或确定个性化和针对患者的治疗方案。我们验证了一项靶向 NGS 髓系检测,以在我们通过 CAP/CLIA 认证的临床实验室中使用。该髓系 NGS 检测组合可识别多达 45 个关键 DNA 靶点和 34 个融合驱动基因,涵盖超过 800 种独特的融合。该检测利用一套自动化纯化系统和测序仪,配备板载生物信息学流程和报告生成功能。这一自动化工作流程从将检测标本装载到纯化系统到结果可供审核,周转时间约为 24 小时。除样本装载和将核酸纯化板转移至测序仪外,所有步骤均无需人工操作。使用市售参考材料(由具有髓系疾病常见 SNV、INDEL 和融合的细胞系人工配制的 DNA 和 RNA 组成)进行分析灵敏度和精密度研究。精密度在 2 台仪器、3 天、2 名操作者和 3 次运行中进行三次重复评估。对于分析特异性,从设计用于稳定核酸的采血管中提取十例正常健康供者的 DNA 和 RNA。对于准确性,从患有多种髓系疾病的患者中提取 8 例外周血淋巴细胞标本,并在待验证的髓系组合和参考 NGS 髓系组合上进行检测。这 8 例髓系标本的主要诊断为慢性髓系白血病(n=3)和骨髓增生异常综合征(n=5)。就准确性而言,该 NGS 髓系检测组合与参考 NGS 髓系组合的一致性为 100%。所有十例正常健康供者均未检测到变异,表明具有高特异性。检测限确定为 DNA 的变异等位基因频率(VAF)≥5%,RNA 融合的融合定位读数 ≥250。就精密度而言,所有条件之间 23 个 DNA 变异的 %CV 为 4.8-28.6%,9 个融合变异的 %CV 为 17.9-36.0%。我们的数据支持将这项靶向髓系 NGS 检测和集成纯化/测序系统用于检测髓系肿瘤中的遗传病变。这一精简的工作流程加快了结果生成,使治疗决策更快。自动化减少了对合格操作者的需求,并有助于对患者样本进行高效的临床管理,以用于疾病诊断和治疗指导。此外,及时获得结果可通过实现更早的治疗决策而使患者受益。这些特质支持在临床环境中使用该系统以更高效地管理患者的疾病。
查看英文原文 English abstract
The large diversity of myeloid neoplasms requires in-depth characterization of genetic abnormalities, including single-nucleotide variants (SNVs), small insertions and deletions (INDELs), and fusions and translocations for diagnosis and management. NGS can identify mutations associated with myeloid disorders to diagnose specific subtypes or identify a personalized and patient-specific treatment. We validated a targeted NGS myeloid assay for use in our CAP/CLIA accredited clinical laboratory. The myeloid NGS panel can identify up to 45 key DNA targets and 34 fusion driver genes covering over 800 unique fusions. The assay utilizes an automated purification system and sequencer with an on-board bioinformatics pipeline and report generation capabilities. This automated workflow has a turnaround time of approximately 24 hours from loading of the test specimen on the purification system to results ready for review. All steps were hands-off except for sample loading and transfer of the nucleic acid purification plate to the sequencer. Commercially available reference materials consisting of contrived DNA and RNA from cell lines with SNVs, INDELS, and fusions common to myeloid disorders were used for analytic sensitivity and precision studies. Precision was evaluated in triplicate over 2 instruments, 3 days, 2 operators, and 3 runs. For analytic specificity, ten normal healthy donor DNA and RNA were extracted from blood collection tubes designed to stabilize nucleic acid. For accuracy, 8 peripheral blood lymphocytes specimens from patients with a variety of myeloid disorders were extracted and assayed on both the myeloid panel under validation and a reference NGS myeloid panel. The 8 myeloid specimens' primary diagnosis was chronic myeloid leukemia (n=3) and myelodysplastic syndrome (n=5). For accuracy, the NGS myeloid assay panel had 100% concordance to the reference NGS myeloid panel. All ten normal healthy donors had no variants detected indicating high specificity. Limit of detection was established as ≥5% Variant Allele Frequency (VAF) for DNA and ≥250 fusion mapped reads for RNA fusions. For precision, the %CV between all conditions was 4.8-28.6% for the 23 DNA variants and 17.9-36.0% for the 9 fusion variants. Our data supports the use of this targeted myeloid NGS assay and the integrated purification/sequencer system for the detection of genetic lesions in myeloid neoplasms. The streamlined workflow accelerated result generation, enabling faster treatment decisions. Automation reduces the need for qualified operators and facilitates efficient clinical management of patient samples for disease diagnosis and treatment guidance. Additionally, availability of timely results can benefit patients by enabling earlier treatment decisions. These qualities support the use of this system in clinical settings for more efficient management of patients' disease.
利益披露 Disclosure
A. Weaver, Biodesix Employment, Stock Option. U. Sathyanarayana, Biodesix Independent Contractor. H. Tomazin, Biodesix Employment, Stock Option. G. Pestano, Biodesix Employment, Stock Option.

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