液体活检
胎儿游离DNA
DNA提取
基因组DNA
DNA
生物标志物
化学
活检
DNA测序
计算生物学
色谱法
聚合酶链反应
基因
癌症
产前诊断
生物
病理
遗传学
胎儿
医学
生物化学
怀孕
作者
Ying Li,Cheng Li,Guanghui Wang,Jiahui Lv,Yifei He,Pan‐Lin Shao,Ruibin Hu,Hongjun Xiao,Jiahu Tang,Dan Niu,Jingkai Yang,Zhongrong Tang,Ziyi Xu,Yiyi Liu,Yang Li,Kun Song,Benqing Wu,Bo Zhang
标识
DOI:10.1016/j.jchromb.2022.123236
摘要
As an emerging biomarker, cell-free DNA (cfDNA) carries crucial genetic information for the diagnosis of hereditary disease and cancer. However, test accuracy was severely compromised by the low abundance of cell-free DNA in peripheral blood, frequently diluted by genomic DNA released from white blood cells, resulting in sample rejection, test inaccuracy, and restricted clinical utility. Herein we report a novel strategy for the efficient recovery of cfDNA with significant removal of genomic DNA contamination during the cfDNA extraction process, based on a nano-magnetic size selective cfDNA extraction platform. With this platform, over 90% cfDNA recovery rate was achieved with minimal genomic DNA contamination. For non-invasive prenatal testing, an increase of fetal fraction from 10.10% to 29.94% medially was observed in 11 maternal plasma samples, with two false-negative samples identified by the proposed workflow. Enrichment of cfDNA in plasma sample of cancer patient demonstrated ∼ 100% increase of circulating tumor DNA (ctDNA) percentage by panel sequencing of specific mutation sites. The approach is simple, automatable and cost-efficient, can improve liquid biopsy precision and reduce sequencing depth through significant enrichment of target abundance. The nano-magnetic platform demonstrated its potential application in liquid biopsy, since it exhibited numerous advantages in avoiding false negative results, reducing sequencing cost, improving data quality, and rescuing contaminated samples.
科研通智能强力驱动
Strongly Powered by AbleSci AI