Department of Pathology, Cancer Center Amsterdam, Amsterdam UMC, Vrije Universiteit Amsterdam, 1081 HV, Amsterdam, the Netherlands.
You2Youself BV, Enschede, the Netherlands.
Clin Chem. 2022 Jun 1;68(6):803-813. doi: 10.1093/clinchem/hvac029.
Assays that account for the biological properties and fragmentation of cell-free DNA (cfDNA) can improve the performance of liquid biopsy. However, preanalytic and physiological differences between individuals on fragmentomic analysis are poorly defined.
We analyzed the impact of collection tube, plasma processing time, and physiology on the size distribution of cfDNA, their genome-wide representation, and sequence diversity at the cfDNA fragment ends using shallow whole-genome sequencing.
Neither different stabilizing collection tubes nor processing times affected the cfDNA fragment sizes, but could impact the genome-wide fragmentation patterns and fragment-end sequences of cfDNA. In addition, beyond differences depending on the gender, the physiological conditions tested between 63 individuals (age, body mass index, use of medication, and chronic conditions) minimally influenced the outcome of fragmentomic methods.
Fragmentomic approaches have potential for implementation in the clinic, pending clear traceability of analytical and physiological factors.
能够反映无细胞游离 DNA(cfDNA)生物学特性和片段化的检测方法可以提高液体活检的性能。然而,个体间在片段组学分析方面的分析前和生理差异尚未明确。
我们使用浅层全基因组测序分析了采集管、血浆处理时间和生理因素对 cfDNA 大小分布、全基因组代表性以及 cfDNA 片段末端序列多样性的影响。
不同的稳定采集管和处理时间均不会影响 cfDNA 片段大小,但可能会影响 cfDNA 的全基因组片段化模式和片段末端序列。此外,除了取决于性别差异之外,在 63 名个体(年龄、体重指数、用药情况和慢性疾病)之间测试的生理条件对片段组学方法的结果影响极小。
片段组学方法具有在临床上实施的潜力,但需要明确分析和生理因素的可追溯性。