Abstract
Cancer is the second leading cause of death in the world and seriously affects the quality of life of patients. The diagnostic techniques for tumors mainly include tumor biomarker detection, instrumental examination, and tissue biopsy. In recent years, liquid technology represented by circulating tumor DNA (ctDNA) has gradually replaced traditional technology with its advantages of being non-invasive and accurate, its high specificity, and its high sensitivity. ctDNA may carry throughout the circulatory system through tumor cell necrosis, apoptosis, circulating exosome secretion, etc., carrying the characteristic changes in tumors, such as mutation, methylation, microsatellite instability, gene rearrangement, etc. In this paper, ctDNA mutation and methylation, as the objects to describe the preparation process before ctDNA analysis, and the detection methods of two gene-level changes, including a series of enrichment detection techniques derived from PCR, sequencing-based detection techniques, and comprehensive detection techniques, are combined with new materials. In addition, the role of ctDNA in various stages of cancer development is summarized, such as early screening, diagnosis, molecular typing, prognosis prediction, recurrence monitoring, and drug guidance. In summary, ctDNA is an ideal biomarker involved in the whole process of tumor development.
Funder
Natural Science Foundation of Hunan Province
key project of the Education Department of Hunan Province
the 2021 Hunan Graduate Scientific Research Innovation Project
General Projects of National Natural Science Foundation of China
Shenzhen Natural Science Foundation Project
Multi-omics liquid biopsy of lung cancer
Development of biomarkers and diagnostic reagents for early gastric cancer, Shenzhen Nanshan District Science and Technology Plan Project
Research Start-up Fund for Discipline Leaders of Huazhong University of Science and Technology Union Shenzhen Hospital
Cited by
28 articles.
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