Opportunities for Early Cancer Detection: The Rise of ctDNA Methylation-Based Pan-Cancer Screening Technologies

被引:25
作者
Constantin, Nicolas [1 ]
Sina, Abu Ali Ibn [1 ]
Korbie, Darren [1 ]
Trau, Matt [1 ,2 ]
机构
[1] Univ Queensland, Australian Inst Bioengn & Nanotechnol AIBN, Corner Coll & Cooper Rd, Ctr Personalised Nanomed, Brisbane, Qld 4072, Australia
[2] Univ Queensland, Sch Chem & Mol Biosci, Brisbane, Qld 4072, Australia
关键词
cancer screening; liquid biopsy testing; circulating tumour DNA; cancer epigenetics; DNA methylation biomarkers; tissue-of-origin prediction; multi-cancer early detection; combinatorial analysis; positive predictive value; DNA METHYLATION; EPIGENETICS; PERFORMANCE; VALIDATION; MARKERS; UPDATE;
D O I
10.3390/epigenomes6010006
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The efficiency of conventional screening programs to identify early-stage malignancies can be limited by the low number of cancers recommended for screening as well as the high cumulative false-positive rate, and associated iatrogenic burden, resulting from repeated multimodal testing. The opportunity to use minimally invasive liquid biopsy testing to screen asymptomatic individuals at-risk for multiple cancers simultaneously could benefit from the aggregated diseases prevalence and a fixed specificity. Increasing both latter parameters is paramount to mediate high positive predictive value-a useful metric to evaluate a screening test accuracy and its potential harm-benefit. Thus, the use of a single test for multi-cancer early detection (stMCED) has emerged as an appealing strategy for increasing early cancer detection rate efficiency and benefit population health. A recent flurry of these stMCED technologies have been reported for clinical potential; however, their development is facing unique challenges to effectively improve clinical cost-benefit. One promising avenue is the analysis of circulating tumour DNA (ctDNA) for detecting DNA methylation biomarker fingerprints of malignancies-a hallmark of disease aetiology and progression holding the potential to be tissue- and cancer-type specific. Utilizing panels of epigenetic biomarkers could potentially help to detect earlier stages of malignancies as well as identify a tumour of origin from blood testing, useful information for follow-up clinical decision making and subsequent patient care improvement. Overall, this review collates the latest and most promising stMCED methodologies, summarizes their clinical performances, and discusses the specific requirements multi-cancer tests should meet to be successfully implemented into screening guidelines.
引用
收藏
页数:27
相关论文
共 77 条
[1]  
Ali RMKM, 2018, RADIOGRAPHY, V24, P240, DOI 10.1016/j.radi.2018.02.001
[2]   DNA hypermethylation in tumorigenesis - epigenetics joins genetics [J].
Baylin, SB ;
Herman, JG .
TRENDS IN GENETICS, 2000, 16 (04) :168-174
[3]   DNA methylation and gene silencing in cancer [J].
Baylin S.B. .
Nature Clinical Practice Oncology, 2005, 2 (Suppl 1) :S4-S11
[4]   A decade of exploring the cancer epigenome - biological and translational implications [J].
Baylin, Stephen B. ;
Jones, Peter A. .
NATURE REVIEWS CANCER, 2011, 11 (10) :726-734
[5]   Clinical epigenetics: seizing opportunities for translation [J].
Berdasco, Maria ;
Esteller, Manel .
NATURE REVIEWS GENETICS, 2019, 20 (02) :109-127
[6]  
Braunstein GD., 2021, touchREVIEWS Oncol Haematol, V17, P3
[7]   Radiation risks potentially associated with low-dose CT screening of adult smokers for lung cancer [J].
Brenner, DJ .
RADIOLOGY, 2004, 231 (02) :440-445
[8]   Liquid biopsy for cancer screening, patient stratification and monitoring [J].
Brock, Graham ;
Castellanos-Rizaldos, Elena ;
Hu, Lan ;
Coticchia, Christine ;
Skog, Johan .
TRANSLATIONAL CANCER RESEARCH, 2015, 4 (03) :280-290
[9]   Transposable elements in cancer [J].
Burns, Kathleen H. .
NATURE REVIEWS CANCER, 2017, 17 (07) :415-424
[10]   Non-invasive early detection of cancer four years before conventional diagnosis using a blood test [J].
Chen, Xingdong ;
Gole, Jeffrey ;
Gore, Athurva ;
He, Qiye ;
Lu, Ming ;
Min, Jun ;
Yuan, Ziyu ;
Yang, Xiaorong ;
Jiang, Yanfeng ;
Zhang, Tiejun ;
Suo, Chen ;
Li, Xiaojie ;
Cheng, Lei ;
Zhang, Zhenhua ;
Niu, Hongyu ;
Li, Zhe ;
Xie, Zhen ;
Shi, Han ;
Zhang, Xiang ;
Fan, Min ;
Wang, Xiaofeng ;
Yang, Yajun ;
Dang, Justin ;
McConnell, Catie ;
Zhang, Juan ;
Wang, Jiucun ;
Yu, Shunzhang ;
Ye, Weimin ;
Gao, Yuan ;
Zhang, Kun ;
Liu, Rui ;
Jin, Li .
NATURE COMMUNICATIONS, 2020, 11 (01)