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Biological and Clinical Significance of Circulating Tumor Cells in Breast Cancer

机译:乳腺癌循环肿瘤细胞的生物学和临床意义

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摘要

Circulating tumor cells (CTCs) represent a unique source of information that might help clarifying numerous aspects of metastasis biology and finding new clinically relevant biomarkers. On the hypothesis that CTCs possess a distinct profile compared to solid primary and secondary lesions, the transcriptome of experimentally-derived CTCs was compared with those of the primary tumor (PT) and metastases at lymph-nodes (LNs) and lung, in order to identify CTC specific signatures involved in hematogenous dissemination and which might represent possible prognostic biomarkers.ududPTs, CTCs, LNs and lungs were collected from the breast cancer (BC) MDA MB 231 xenograft model and characterized in two independent experiments using a microarray platform. CTCs were distinguishable from solid lesions by a set of 474 significantly differentially expressed genes. Among genes up-regulated in CTCs, the trefoil factor 3 secreted peptide (TFF3) was selected to evaluate its role in CTC biology. TFF3 down-modulation or knock-out (KO) significantly impaired MDA MB 231 cell migratory and invasive properties, but not their proliferation rate or vascular mimicry ability, in in vitro assays. Xenograft experiments with MDA MB 231 TFF3KO clones did not allow drawing conclusions on the involvement of TFF3 in dissemination and metastasis as the interpretation of results was hampered by the biological heterogeneity observed among clones. Interestingly, the expression status of TFF3 and some other CTC/metastasis-specific genes assessed in CTCs isolated from peripheral blood of BC patients, but not CTC status alone defined using standard markers, allowed identifying a group at higher risk of relapse or progression. Indeed, patients with TFF3+ CTCs had a significantly shorter progression-free survival compared to those with TFF3- CTCs. On the contrary, TFF3 expression level assessed in publicly available primary BC datasets did not correlate with tumor relapse.ududThe study of biologically relevant CTC-specific genes may allow deciphering the molecular mechanisms which orchestrate dissemination and real-time monitoring tumor evolution.
机译:循环肿瘤细胞(CTC)代表着独特的信息来源,可能有助于阐明转移生物学的各个方面并寻找新的临床相关生物标志物。假设CTC与实体原发性和继发性病变相比具有明显的特征,将实验来源的CTC的转录组与原发性肿瘤(PT)的转录组以及淋巴结和肺转移处的转移进行了比较,以便识别涉及血源性传播的CTC特异性标记,并可能代表可能的预后生物标志物。 ud udPTs,CTC,LN和肺是从乳腺癌(BC)MDA MB 231异种移植模型中收集的,并使用微阵列平台在两个独立的实验中进行了表征。 CTC可通过一组474个差异显着表达的基因与实体病变区分开。在CTC中上调的基因中,选择了三叶因子3分泌肽(TFF3)来评估其在CTC生物学中的作用。在体外测定中,TFF3的下调或敲除(KO)显着损害MDA MB 231细胞的迁移和侵袭特性,但不损害其增殖速率或血管模仿能力。使用MDA MB 231 TFF3KO克隆进行异种移植实验无法得出关于TFF3参与传播和转移的结论,因为对结果的解释受到克隆间观察到的生物学异质性的阻碍。有趣的是,在从BC患者外周血中分离出的CTC中评估了TFF3和其他一些CTC /转移特异性基因的表达状态,但未单独使用标准标记定义CTC状态,因此可以鉴定出复发或进展风险较高的人群。确实,与具有TFF3-CTC的患者相比,具有TFF3 + CTC的患者的无进展生存期明显缩短。相反,在公开的主要BC数据集中评估的TFF3表达水平与肿瘤复发无关。 ud ud对CTC生物学相关基因的生物学研究可能有助于破译协调传播和实时监测肿瘤演变的分子机制。

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    Fina Emanuela;

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  • 年度 2017
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