NGS平台Ion Torrent个人基因组机与Therascreen Rotor-Gene Q检测癌症体细胞变异的比较研究。

Q2 Biochemistry, Genetics and Molecular Biology
High-Throughput Pub Date : 2020-02-11 DOI:10.3390/ht9010004
Angela Lombardi, Margherita Russo, Amalia Luce, Floriana Morgillo, Virginia Tirino, Gabriella Misso, Erika Martinelli, Teresa Troiani, Vincenzo Desiderio, Gianpaolo Papaccio, Francesco Iovino, Giuseppe Argenziano, Elvira Moscarella, Pasquale Sperlongano, Gennaro Galizia, Raffaele Addeo, Alois Necas, Andrea Necasova, Fortunato Ciardiello, Andrea Ronchi, Michele Caraglia, Anna Grimaldi
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引用次数: 2

摘要

肿瘤的分子谱分析使我们有机会设计出特异性的治疗方法,这些治疗方法只能与具有多种基因组畸变积累特征的癌细胞相互作用。本研究探讨了下一代测序(NGS)和突变特异性分析方法在非小细胞肺癌(NSCLC)、转移性结直肠癌(mCRC)和黑色素瘤患者当前治疗中检测靶基因的有用性。我们分别关注了NSCLC、黑色素瘤和mCRC样本中的EGFR、BRAF、KRAS和BRAF基因。我们的研究表明,在大约2%的分析病例中,这两种技术没有显示相同或重叠的结果。根据PGM分析,2例mCRC患者的BRAF为野生型(WT), 2例NSCLC患者的EGFR为WT。相比之下,使用therascreen测试Rotor-Gene q对这些样本进行了评估基因的突变。总之,我们的经验表明,用更敏感的分析方法确认感兴趣基因的WT状态是合适的,以避免出现小型肿瘤克隆,并促使临床医生纠正患者监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparative Study of NGS Platform Ion Torrent Personal Genome Machine and Therascreen Rotor-Gene Q for the Detection of Somatic Variants in Cancer.

Comparative Study of NGS Platform Ion Torrent Personal Genome Machine and Therascreen Rotor-Gene Q for the Detection of Somatic Variants in Cancer.

Molecular profiling of a tumor allows the opportunity to design specific therapies which are able to interact only with cancer cells characterized by the accumulation of several genomic aberrations. This study investigates the usefulness of next-generation sequencing (NGS) and mutation-specific analysis methods for the detection of target genes for current therapies in non-small-cell lung cancer (NSCLC), metastatic colorectal cancer (mCRC), and melanoma patients. We focused our attention on EGFR, BRAF, KRAS, and BRAF genes for NSCLC, melanoma, and mCRC samples, respectively. Our study demonstrated that in about 2% of analyzed cases, the two techniques did not show the same or overlapping results. Two patients affected by mCRC resulted in wild-type (WT) for BRAF and two cases with NSCLC were WT for EGFR according to PGM analysis. In contrast, these samples were mutated for the evaluated genes using the therascreen test on Rotor-Gene Q. In conclusion, our experience suggests that it would be appropriate to confirm the WT status of the genes of interest with a more sensitive analysis method to avoid the presence of a small neoplastic clone and drive the clinician to correct patient monitoring.

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来源期刊
High-Throughput
High-Throughput Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.60
自引率
0.00%
发文量
0
审稿时长
9 weeks
期刊介绍: High-Throughput (formerly Microarrays, ISSN 2076-3905) is a multidisciplinary peer-reviewed scientific journal that provides an advanced forum for the publication of studies reporting high-dimensional approaches and developments in Life Sciences, Chemistry and related fields. Our aim is to encourage scientists to publish their experimental and theoretical results based on high-throughput techniques as well as computational and statistical tools for data analysis and interpretation. The full experimental or methodological details must be provided so that the results can be reproduced. There is no restriction on the length of the papers. High-Throughput invites submissions covering several topics, including, but not limited to: -Microarrays -DNA Sequencing -RNA Sequencing -Protein Identification and Quantification -Cell-based Approaches -Omics Technologies -Imaging -Bioinformatics -Computational Biology/Chemistry -Statistics -Integrative Omics -Drug Discovery and Development -Microfluidics -Lab-on-a-chip -Data Mining -Databases -Multiplex Assays
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