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追踪癌症进展:从循环肿瘤细胞到转移。

Tracking cancer progression: from circulating tumor cells to metastasis.

机构信息

Department of Biomedicine, Cancer Metastasis Laboratory, University of Basel and University Hospital Basel, 4058, Basel, Switzerland.

Swiss Institute of Bioinformatics, 1015, Lausanne, Switzerland.

出版信息

Genome Med. 2020 Mar 19;12(1):31. doi: 10.1186/s13073-020-00728-3.

Abstract

The analysis of circulating tumor cells (CTCs) is an outstanding tool to provide insights into the biology of metastatic cancers, to monitor disease progression and with potential for use in liquid biopsy-based personalized cancer treatment. These goals are ambitious, yet recent studies are already allowing a sharper understanding of the strengths, challenges, and opportunities provided by liquid biopsy approaches. For instance, through single-cell-resolution genomics and transcriptomics, it is becoming increasingly clear that CTCs are heterogeneous at multiple levels and that only a fraction of them is capable of initiating metastasis. It also appears that CTCs adopt multiple ways to enhance their metastatic potential, including homotypic clustering and heterotypic interactions with immune and stromal cells. On the clinical side, both CTC enumeration and molecular analysis may provide new means to monitor cancer progression and to take individualized treatment decisions, but their use for early cancer detection appears to be challenging compared to that of other tumor derivatives such as circulating tumor DNA. In this review, we summarize current data on CTC biology and CTC-based clinical applications that are likely to impact our understanding of the metastatic process and to influence the clinical management of patients with metastatic cancer, including new prospects that may favor the implementation of precision medicine.

摘要

循环肿瘤细胞(CTC)分析是一种卓越的工具,可深入了解转移性癌症的生物学特性,监测疾病进展,并有可能用于基于液体活检的个性化癌症治疗。这些目标很有雄心,但最近的研究已经让人们更清楚地了解液体活检方法的优势、挑战和机遇。例如,通过单细胞分辨率基因组学和转录组学,越来越清楚的是,CTC 在多个层面上具有异质性,只有其中一部分有能力引发转移。似乎 CTC 还采用多种方式来增强其转移潜能,包括同质聚类和与免疫细胞和基质细胞的异质相互作用。在临床方面,CTC 计数和分子分析都可能为监测癌症进展和做出个体化治疗决策提供新手段,但与其他肿瘤衍生物(如循环肿瘤 DNA)相比,它们用于早期癌症检测的效果似乎具有挑战性。在这篇综述中,我们总结了目前关于 CTC 生物学和基于 CTC 的临床应用的数据,这些数据可能会影响我们对转移过程的理解,并影响转移性癌症患者的临床管理,包括可能有利于实施精准医学的新前景。

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