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Identification of mutations in circulating cell-free tumour DNA as a biomarker in hepatocellular carcinoma

肝细胞癌 肝癌 胎儿游离DNA 冷PCR 聚合酶链反应 癌症 DNA 生物 癌症研究 分子生物学 生物标志物 医学 突变 基因 内科学 点突变 遗传学 胎儿 产前诊断 怀孕
作者
Jessica Howell,Stephen R. Atkinson,David J. Pinato,Susanne Knapp,Caroline Ward,Rosalba Minisini,Michela Emma Burlone,Monica Leutner,Mario Pirisi,Reinhard Büttner,Shahid A. Khan,Mark Thursz,Margarete Odenthal,Rohini Sharma
出处
期刊:European Journal of Cancer [Elsevier BV]
卷期号:116: 56-66 被引量:68
标识
DOI:10.1016/j.ejca.2019.04.014
摘要

Abstract Background Hepatocellular carcinoma (HCC) is increasing globally. Prognostic biomarkers are urgently needed to guide treatment and reduce mortality. Tumour-derived circulating cell-free DNA (ctDNA) is a novel, minimally invasive means of determining genetic alterations in cancer. We evaluate the accuracy of ctDNA as a biomarker in HCC. Methods Plasma cell-free DNA, matched germline DNA and HCC tissue DNA were isolated from patients with HCC (n = 51) and liver cirrhosis (n = 10). Targeted, multiplex polymerase chain reaction ultra-deep sequencing was performed using a liver cancer–specific primer panel for genes ARID1A, ARID2, AXIN1, ATM, CTNNB1, HNF1A and TP53. Concordance of mutations in plasma ctDNA and HCC tissue DNA was determined, and associations with clinical outcomes were analysed. Results Plasma cell-free DNA was detected in all samples. Lower plasma cell-free DNA levels were seen in Barcelona Clinic Liver Cancer (BCLC A compared with BCLC stage B/C/D (median concentration 122.89 ng/mL versus 168.21 ng/mL, p = 0.041). 29 mutations in the eight genes (21 unique mutations) were detected in 18/51 patients (35%), median 1.5 mutations per patient (interquartile range 1–2). Mutations were most frequently detected in ARID1A (11.7%), followed by CTNNB1 (7.8%) and TP53 (7.8%). In patients with matched tissue DNA, all mutations detected in plasma ctDNA detected were confirmed in HCC DNA; however, 71% of patients had mutations identified in HCC tissue DNA that were not detected in matched ctDNA. Conclusion ctDNA is quantifiable across all HCC stages and allows detection of mutations in key driver genes of hepatic carcinogenesis. This study demonstrates high specificity but low sensitivity of plasma ctDNA for detecting mutations in matched HCC tissue.
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