Garcés Juan-José, San-Miguel Jesús, Paiva Bruno
Clinica Universidad de Navarra, Cancer Center Universidad de Navarra (CCUN), Centro de Investigacion Medica Aplicada (CIMA), Centro de Investigacion Biomedica en Red-Oncologia (CIBERONC), Instituto de Investigacion Sanitaria de Navarra (IDISNA), 31008 Navarra, Spain.
Cancers (Basel). 2022 Mar 10;14(6):1430. doi: 10.3390/cancers14061430.
Bone marrow (BM) aspirates are the gold standard for patient prognostication and genetic characterization in multiple myeloma (MM). However, they represent an important limitation for periodic disease monitoring because they entail an aggressive procedure. Moreover, recent findings show that a single BM aspirate is unable to reflect the complex MM heterogeneity. Recent advances in flow cytometry, microfluidics, and "omics" technologies have opened Pandora's box of MM: The detection and isolation of circulating tumor cells (CTCs) offer a promising and minimally invasive alternative for tumor assessment and metastasis study. CTCs are detectable in premalignant and active MM states, and their enumeration has strong prognostic value, to the extent that it is challenging current stratification systems. In addition, CTCs reflect with high precision both intra- and extra-medullary disease at the phenotypic, genomic, and transcriptomic levels. Despite this high resemblance between tumor clones in distinct locations, some subtle (not random) differences might shed some light on the metastatic process. Thus, it has been suggested that a hypoxic and pro-inflammatory microenvironment could induce an arrest in proliferation forcing tumor cells to recirculate. Herein, we summarize data on the characterization of MM CTCs as well as their clinical and research potential.
骨髓穿刺液是多发性骨髓瘤(MM)患者预后评估和基因特征分析的金标准。然而,由于其操作具有侵袭性,这使其成为定期疾病监测的一个重要限制因素。此外,最近的研究结果表明,单次骨髓穿刺液无法反映MM复杂的异质性。流式细胞术、微流控技术和“组学”技术的最新进展开启了MM的潘多拉魔盒:循环肿瘤细胞(CTC)的检测和分离为肿瘤评估和转移研究提供了一种有前景且微创的替代方法。在癌前和活跃的MM状态下均可检测到CTC,其计数具有很强的预后价值,甚至对当前的分层系统构成了挑战。此外,CTC在表型、基因组和转录组水平上都能高精度地反映髓内和髓外疾病。尽管不同部位的肿瘤克隆之间有高度相似性,但一些细微(非随机)差异可能有助于揭示转移过程。因此,有人提出低氧和促炎微环境可能会导致增殖停滞,迫使肿瘤细胞再循环。在此,我们总结了关于MM CTC特征及其临床和研究潜力的数据。