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循环肿瘤 DNA 的检测和诊断应用

Detection and Diagnostic Utilization of Cellular and Cell-Free Tumor DNA.

机构信息

Ludwig Center, Department of Oncology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21287, USA.

Department of Radiation Oncology, Stanford Cancer Institute, and Institute for Stem Cell Biology and Regenerative Medicine, Stanford University School of Medicine, Stanford, California 94305, USA; email:

出版信息

Annu Rev Pathol. 2021 Jan 24;16:199-222. doi: 10.1146/annurev-pathmechdis-012419-032604. Epub 2020 Nov 23.

Abstract

Because cancer is caused by an accumulation of genetic mutations, mutant DNA released by tumors can be used as a highly specific biomarker for cancer. Although this principle was described decades ago, the advent and falling costs of next-generation sequencing have made the use of tumor DNA as a biomarker increasingly practical. This review surveys the use of cellular and cell-free DNA for the detection of cancer, with a focus on recent technological developments and applications to solid tumors. It covers () key principles and technology enabling the highly sensitive detection of tumor DNA; () assessment of tumor DNA in plasma, including for genotyping, minimal residual disease detection, and early detection of localized cancer; () detection of tumor DNA in body cavity fluids, such as urine or cerebrospinal fluid; and () challenges posed to the use of tumor DNA as a biomarker by the phenomenon of benign clonal expansions.

摘要

由于癌症是由基因突变的积累引起的,因此肿瘤释放的突变 DNA 可以用作癌症的高度特异性生物标志物。尽管这一原理几十年前就已被描述,但下一代测序技术的出现和成本降低,使得肿瘤 DNA 作为生物标志物的应用变得越来越实际。本综述调查了使用细胞和无细胞 DNA 检测癌症的情况,重点介绍了最近的技术发展及其在实体瘤中的应用。它涵盖了 () 能够高度灵敏地检测肿瘤 DNA 的关键原则和技术;() 评估血浆中的肿瘤 DNA,包括用于基因分型、微量残留病检测和局部癌症早期检测;() 检测体液中的肿瘤 DNA,如尿液或脑脊液;以及 () 良性克隆扩增现象对肿瘤 DNA 作为生物标志物的应用带来的挑战。

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