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Oncomine焦点分析在实体瘤治疗诊断分析中的性能特征:一项为期21个月的实际研究

Performance Characteristics of Oncomine Focus Assay for Theranostic Analysis of Solid Tumors, A (21-Months) Real-Life Study.

作者信息

Bamba-Funck Jessica, Fabre Emmanuelle E, Kambouchner Marianne, Schischmanoff Olivier

机构信息

Laboratory of Biochemistry, Hôpital Avicenne, Hôpitaux Universitaires Paris-Seine-Saint-Denis, Assistance Publique-Hôpitaux de Paris, F-93000 Bobigny, France.

Laboratory for Vascular Translational Science, LVTS, UMR INSERM 1148, UFR SMBH, Université Sorbonne Paris Nord, F-93000 Bobigny, France.

出版信息

Diagnostics (Basel). 2023 Mar 1;13(5):937. doi: 10.3390/diagnostics13050937.

Abstract

Next generation sequencing analysis is crucial for therapeutic decision in various solid tumor contexts. The sequencing method must remain accurate and robust throughout the instrument lifespan allowing the biological validation of patients' results. This study aims to evaluate the long-term sequencing performances of the Oncomine Focus assay kit allowing theranostic DNA and RNA variants detection on the Ion S5XL instrument. We evaluated the sequencing performances of 73 consecutive chips over a 21-month period and detailed the sequencing data obtained from both quality controls and clinical samples. The metrics describing sequencing quality remained stable throughout the study. We showed that an average of 11 × 10 (±0.3 × 10) reads were obtained using a 520 chip leading to an average of 6.0 × 10 (±2.6 × 10) mapped reads per sample. Of 400 consecutive samples, 95.8 ± 16% of amplicons reached the depth threshold of 500X. Slight modifications of the bioinformatics workflow improved DNA analytical sensitivity and allowed the systematic detection of expected SNV, indel, CNV, and RNA alterations in quality controls samples. The low inter-run variability of DNA and RNA-even at low variant allelic fraction, amplification factor, or reads counts-indicated that our method was adapted to clinical practice. The analysis of 429 clinical DNA samples indicated that the modified bioinformatics workflow allowed detection of 353 DNA variants and 88 gene amplifications. RNA analysis of 55 clinical samples revealed 7 alterations. This is the first study showing the long-term robustness of the Oncomine Focus assay in clinical routine practice.

摘要

下一代测序分析对于各种实体瘤情况下的治疗决策至关重要。在整个仪器使用寿命期间,测序方法必须保持准确和稳健,以便对患者的结果进行生物学验证。本研究旨在评估Oncomine Focus检测试剂盒的长期测序性能,该试剂盒可在Ion S5XL仪器上进行治疗诊断DNA和RNA变异检测。我们在21个月的时间里评估了73个连续芯片的测序性能,并详细说明了从质量控制和临床样本中获得的测序数据。在整个研究过程中,描述测序质量的指标保持稳定。我们发现,使用520芯片平均可获得11×10(±0.3×10)条读数,每个样本平均有6.0×10(±2.6×10)条比对读数。在400个连续样本中,95.8±16%的扩增子达到了500X的深度阈值。对生物信息学工作流程的轻微修改提高了DNA分析灵敏度,并允许在质量控制样本中系统地检测预期的单核苷酸变异(SNV)、插入缺失(indel)、拷贝数变异(CNV)和RNA改变。DNA和RNA的低批间变异性——即使在低变异等位基因分数、扩增因子或读数计数情况下——表明我们的方法适用于临床实践。对429份临床DNA样本的分析表明,修改后的生物信息学工作流程能够检测到353个DNA变异和88个基因扩增。对55份临床样本的RNA分析发现了7处改变。这是第一项展示Oncomine Focus检测在临床常规实践中具有长期稳健性的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5ad/10001101/22d974f58874/diagnostics-13-00937-g001.jpg

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