循环肿瘤细胞簇:分离、生物学意义和治疗意义。

BMJ oncology Pub Date : 2024-09-10 eCollection Date: 2024-01-01 DOI:10.1136/bmjonc-2024-000437
Yufan Yang, Guanyin Huang, Jingru Lian, Chunhao Long, Boxi Zhao, Xuefei Liu, Binyu Zhang, Weijian Ye, Junhao Chen, Longxiang Du, Zhuofeng Jiang, Jialing Liu, Jianglin Zhang, Chengzhi Hu, Qingfeng Chen, Xin Hong
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引用次数: 0

摘要

循环肿瘤细胞(CTC)和CTC簇被认为是转移的前体,因为它们有能力播下远处转移的种子。然而,由于ctc必须承受流体剪切力和抗脱落引起的损伤,因此在血流中导航对ctc来说是一个重大挑战。因此,虽然来自原发肿瘤的大量细胞可能进入循环,但只有一小部分会导致转移。然而,当CTC与其他类型的细胞(包括中性粒细胞、髓源性抑制细胞、巨噬细胞、血小板、癌症相关成纤维细胞和循环中发现的红细胞)结合形成CTC簇时,转移能力显著增强。这种异型CTC聚类事件已在多种癌症类型中被发现,可能作为有趣的治疗靶点和液体活检的新生物标志物。本文综述了用于分离CTC簇的微流控技术的最新进展,并探讨了循环系统中不同类型的CTC簇的生物学特性。对CTC簇-血液微环境相互作用机制的研究可能为获得CTC簇介导的转移进展的新见解提供了一条有希望的途径,并揭示了设计个性化抗转移治疗的潜在机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Circulating tumour cell clusters: isolation, biological significance and therapeutic implications.

Circulating tumour cell clusters: isolation, biological significance and therapeutic implications.

Circulating tumour cell clusters: isolation, biological significance and therapeutic implications.

Circulating tumour cell clusters: isolation, biological significance and therapeutic implications.

Circulating tumour cells (CTCs) and CTC clusters are considered metastatic precursors due to their ability to seed distant metastasis. However, navigating the bloodstream presents a significant challenge for CTCs, as they must endure fluid shear forces and resist detachment-induced anoikis. Consequently, while a large number of cells from the primary tumour may enter the circulation, only a tiny fraction will result in metastasis. Nevertheless, the metastatic potency dramatically increases when CTCs travel in conjunction with other cell types to form CTC clusters, including neutrophils, myeloid-derived suppressor cells, macrophages, platelets, cancer-associated fibroblasts and red blood cells found in circulation. Such heterotypic CTC clustering events have been identified in a variety of cancer types and may serve as intriguing therapeutic targets and novel biomarkers for liquid biopsy. This review summarises recent advances in microfluidic technologies designed for the isolation of CTC clusters and explores the biological properties of distinct types of CTC clusters within the circulatory system. Investigation of the mechanisms of CTC cluster-blood microenvironment interactions may offer a promising avenue for gaining fresh insights into CTC cluster-mediated metastatic progression and reveal potential opportunities for devising personalised antimetastasis treatments.

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