Shanghai Skin Disease Hospital, School of Medicine, Tongji University, 200443, Shanghai, China.
Center for Bioinformatics and Computational Biology, School of Life Sciences, East China Normal University, 200241, Shanghai, China.
Br J Cancer. 2023 Feb;128(4):505-518. doi: 10.1038/s41416-022-02048-2. Epub 2022 Nov 10.
The innovation of liquid biopsy holds great potential to revolutionise cancer management through early diagnosis and timely treatment of cancer. Integrative analysis of different tumour-derived omics data (such as genomics, epigenetics, fragmentomics, and proteomics) from body fluids for cancer detection and monitoring could outperform the analysis of single modality data alone. In this review, we focussed on the discussion of early cancer detection and molecular residual disease surveillance based on multi-omics data of blood. We summarised diverse types of tumour-derived components, current popular platforms for profiling cancer-associated signals, machine learning approaches for joint analysis of liquid biopsy data, as well as multi-omics-based early detection of cancers, molecular residual disease monitoring, and treatment response surveillance. We also discussed the challenges and future directions of multi-omics-based liquid biopsy. With the development of both experimental protocols and computational methods dedicated to liquid biopsy, the implementation of multi-omics strategies into the clinical workflow will likely benefit the clinical management of cancers including decision-making guidance and patient outcome improvement.
液体活检的创新具有通过早期诊断和及时治疗癌症来彻底改变癌症管理的巨大潜力。对来自体液的不同肿瘤衍生组学数据(如基因组学、表观遗传学、片段组学和蛋白质组学)进行综合分析,用于癌症检测和监测,可能优于单独分析单一模式数据。在这篇综述中,我们专注于讨论基于血液的多组学数据进行早期癌症检测和分子残留疾病监测。我们总结了不同类型的肿瘤衍生成分、当前流行的癌症相关信号分析平台、用于联合分析液体活检数据的机器学习方法,以及基于多组学的癌症早期检测、分子残留疾病监测和治疗反应监测。我们还讨论了基于多组学的液体活检的挑战和未来方向。随着专门用于液体活检的实验方案和计算方法的发展,将多组学策略应用于临床工作流程,可能会有益于癌症的临床管理,包括决策指导和患者预后改善。