核小体
表观遗传学
DNA
背景(考古学)
碎片(计算)
医学
计算生物学
核酸酶
组蛋白
DNA甲基化
DNA断裂
基因组学
数字聚合酶链反应
基因组DNA
生物信息学
表观遗传学
基因组不稳定性
补语(音乐)
钥匙(锁)
遗传学
基因组
外显子组
染色质
生物
后生
作者
Tianliang Liu,Zhicheng Li,Shifu Chen,Jiasheng Zhong
标识
DOI:10.14336/ad.2025.1029
摘要
Circulating cell-free DNA (cfDNA) comprises DNA fragments released into bodily fluids via apoptosis, necrosis, or phagocytosis. cfDNA encapsulates both fragmentomics (structural) and non-fragmentomics (sequence/epigenetic) information from source cells, thereby representing a promising biomarker. While non-fragmentomics analyses have enabled diverse diagnostic applications, they often falter in diseases with subtle or widespread genomic changes due to low cfDNA abundance and clonal hematopoiesis interference. Emerging evidence reveals that cfDNA fragmentation is shaped by nucleosome occupancy, nuclease activity, and epigenetic factors, yielding distinct patterns in fragment size, end motifs, nucleosome footprints, and topology. These fragmentomics signatures diverge markedly between healthy and diseased states, and across age group, offering opportunities to complement non-fragmentomics and enhance accuracy. This review delineates key cfDNA fragmentomics targets, elucidates fragmentation mechanisms, and explores clinical applications in the context of diseases and aging. We further survey cutting-edge technologies and computational algorithms and discuss implementation challenges alongside future prospects.
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