液体活检
一致性
活检
胎儿游离DNA
冷PCR
癌症
结直肠癌
分子生物学
医学
寡核苷酸
肺癌
DNA
循环肿瘤DNA
内科学
突变
生物
基因
点突变
遗传学
产前诊断
怀孕
胎儿
作者
Fábio Pittella Silva,Yoon Ming Chin,Ting Chan,Satoshi Nagayama,Eisaku Miyauchi,Siew‐Kee Low,Yusuke Nakamura
出处
期刊:Clinical Chemistry
[American Association for Clinical Chemistry]
日期:2020-04-20
卷期号:66 (7): 946-957
被引量:65
标识
DOI:10.1093/clinchem/hvaa103
摘要
Abstract Background Blood-based analysis of circulating tumor DNA (ctDNA) is a promising tool for cancer screening, monitoring relapse/recurrence and evaluating response to treatment. Although plasma is widely used to obtain ctDNA, biorepositories worldwide possess a huge number of serum samples and comparative studies on the use of serum vs plasma as ctDNA sources are essential. Methods We analyzed cell-free DNA (cfDNA) from matched EDTA-plasma and serum samples from healthy donors and patients with colorectal or lung cancer, and used targeted next-generation sequencing to evaluate mutation detection efficiency and reproducibility. Matched samples from healthy individuals were spiked with reference oligonucleotides and sequenced using the Ion-S5 Oncomine-Pan-Cancer panel. Detection efficiency in matched samples from patients with cancer was evaluated using 2 distinct gene panels and compared to mutations found in tissue-biopsy samples at diagnosis. Results Mean total cfDNA was 55% higher in serum samples and the presence of longer DNA fragments was significantly increased in serum compared with plasma samples (P = 0.0001 to 0.015). Spiked mutated nucleotides were detected in both samples, but allele frequencies (AF) were approximately half in serum compared with plasma, suggesting ctDNA from serum was more diluted by DNA of noncancerous origins. Matched samples from patients with cancer revealed that up to 44.8% of mutations with low AF were missed in serum samples and concordance rates with somatic mutations found in tissue biopsy at diagnosis was better in plasma samples. Conclusion The use of serum in retrospective studies should consider the limitations for detecting low AF mutations. Plasma is clearly preferable for prospective clinical applications of liquid biopsy.
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