Dasgupta Arko, Lim Andrea R, Ghajar Cyrus M
Public Health Sciences Division/Translational Research Program and Human Biology Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.
Program in Molecular and Cellular Biology, University of Washington, Seattle, WA, USA.
Mol Oncol. 2017 Jan;11(1):40-61. doi: 10.1002/1878-0261.12022.
Tumor cells leave the primary tumor and enter the circulation. Once there, they are called circulating tumor cells (CTCs). A fraction of CTCs are capable of entering distant sites and persisting as disseminated tumor cells (DTCs). An even smaller fraction of DTCs are capable of progressing toward metastases. It is known that the DTC microenvironment plays an important role in sustaining their survival, regulating their growth, and conferring resistance to therapy. But we still have much to learn about the nature of these rare cell populations to predict which will progress and what exactly should cause concern for future relapse. Although recent technological advances in our ability to detect and molecularly and functionally characterize CTCs and DTCs promise to unravel this ambiguity, the timing of dissemination and the precise source of CTCs and DTCs profiled will impact the conclusions that can be made from these endeavors. In this review, we discuss the biology of CTCs and DTCs; the technologies to detect, isolate, and profile these cells; and the exceptions we must apply to our understanding of what role these cells play in the metastatic process. We conclude that a greater effort to understand the unique biology of these cells in context will positively impact our ability to use these cells to predict outcome, monitor treatment efficacy, and reveal therapeutically relevant targets to deplete these populations and ultimately prevent metastasis.
肿瘤细胞离开原发肿瘤并进入循环系统。一旦进入循环系统,它们就被称为循环肿瘤细胞(CTC)。一部分CTC能够进入远处部位并作为播散肿瘤细胞(DTC)持续存在。甚至只有更小一部分DTC能够发展为转移灶。已知DTC微环境在维持其生存、调节其生长以及赋予其治疗抗性方面发挥着重要作用。但是,为了预测哪些DTC会发展以及究竟哪些因素应引起对未来复发的关注,我们对于这些稀有细胞群体的性质仍有许多需要了解的地方。尽管我们在检测以及对CTC和DTC进行分子和功能表征方面的技术进步有望消除这种不确定性,但播散的时间以及所分析的CTC和DTC的确切来源将影响从这些研究中得出的结论。在本综述中,我们讨论了CTC和DTC的生物学特性;检测、分离和分析这些细胞的技术;以及我们在理解这些细胞在转移过程中所起的作用时必须考虑的特殊情况。我们得出结论,更加努力地在具体背景下理解这些细胞的独特生物学特性将对我们利用这些细胞预测预后、监测治疗效果以及揭示与治疗相关的靶点以清除这些细胞群体并最终预防转移的能力产生积极影响。