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组织特异性游离 DNA 降解定量检测循环肿瘤 DNA 负担。

Tissue-specific cell-free DNA degradation quantifies circulating tumor DNA burden.

机构信息

Genome Institute of Singapore (GIS), A*STAR, Singapore, Singapore.

National Cancer Center Singapore, Singapore, Singapore.

出版信息

Nat Commun. 2021 Apr 13;12(1):2229. doi: 10.1038/s41467-021-22463-y.

Abstract

Profiling of circulating tumor DNA (ctDNA) may offer a non-invasive approach to monitor disease progression. Here, we develop a quantitative method, exploiting local tissue-specific cell-free DNA (cfDNA) degradation patterns, that accurately estimates ctDNA burden independent of genomic aberrations. Nucleosome-dependent cfDNA degradation at promoters and first exon-intron junctions is strongly associated with differential transcriptional activity in tumors and blood. A quantitative model, based on just 6 regulatory regions, could accurately predict ctDNA levels in colorectal cancer patients. Strikingly, a model restricted to blood-specific regulatory regions could predict ctDNA levels across both colorectal and breast cancer patients. Using compact targeted sequencing (<25 kb) of predictive regions, we demonstrate how the approach could enable quantitative low-cost tracking of ctDNA dynamics and disease progression.

摘要

循环肿瘤 DNA(ctDNA)分析可能提供一种非侵入性的方法来监测疾病进展。在这里,我们开发了一种定量方法,利用局部组织特异性的无细胞 DNA(cfDNA)降解模式,在不依赖基因组异常的情况下准确估计 ctDNA 负担。启动子和第一外显子-内含子交界处的核小体依赖性 cfDNA 降解与肿瘤和血液中的差异转录活性密切相关。仅基于 6 个调控区域的定量模型可以准确预测结直肠癌患者的 ctDNA 水平。引人注目的是,仅限制于血液特异性调控区域的模型可以预测结直肠癌和乳腺癌患者的 ctDNA 水平。通过对预测区域进行紧凑的靶向测序(<25 kb),我们展示了该方法如何能够实现定量低成本跟踪 ctDNA 动态和疾病进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4af6/8044092/7026a9d1208a/41467_2021_22463_Fig1_HTML.jpg

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