Laboratory of Tumour and Development Biology (LBTD), GIGA-Cancer, Liège, Belgium.
Laboratory of Experimental Pathology (LEP), GIGA-Cancer, Liège, Belgium.
J Pathol. 2015 Aug;236(4):491-504. doi: 10.1002/path.4546. Epub 2015 May 12.
Epithelial-mesenchymal transition (EMT) programmes provide cancer cells with invasive and survival capacities that might favour metastatic dissemination. Whilst signalling cascades triggering EMT have been extensively studied, the impact of EMT on the crosstalk between tumour cells and the tumour microenvironment remains elusive. We aimed to identify EMT-regulated soluble factors that facilitate the recruitment of host cells in the tumour. Our findings indicate that EMT phenotypes relate to the induction of a panel of secreted mediators, namely IL-8, IL-6, sICAM-1, PAI-1 and GM-CSF, and implicate the EMT-transcription factor Snail as a regulator of this process. We further show that EMT-derived soluble factors are pro-angiogenic in vivo (in the mouse ear sponge assay), ex vivo (in the rat aortic ring assay) and in vitro (in a chemotaxis assay). Additionally, conditioned medium from EMT-positive cells stimulates the recruitment of myeloid cells. In a bank of 40 triple-negative breast cancers, tumours presenting features of EMT were significantly more angiogenic and infiltrated by a higher quantity of myeloid cells compared to tumours with little or no EMT. Taken together, our results show that EMT programmes trigger the expression of soluble mediators in cancer cells that stimulate angiogenesis and recruit myeloid cells in vivo, which might in turn favour cancer spread.
上皮-间充质转化 (EMT) 程序赋予癌细胞侵袭和生存能力,可能有利于转移扩散。虽然触发 EMT 的信号级联已被广泛研究,但 EMT 对肿瘤细胞与肿瘤微环境之间串扰的影响仍不清楚。我们旨在确定 EMT 调控的可溶性因子,以促进宿主细胞在肿瘤中的募集。我们的研究结果表明,EMT 表型与一组分泌介质的诱导有关,即 IL-8、IL-6、sICAM-1、PAI-1 和 GM-CSF,并表明 EMT 转录因子 Snail 是该过程的调节剂。我们进一步表明,EMT 衍生的可溶性因子在体内(在小鼠耳朵海绵测定中)、体外(在大鼠主动脉环测定中)和体外(在趋化性测定中)具有促血管生成作用。此外,来自 EMT 阳性细胞的条件培养基刺激髓样细胞的募集。在 40 例三阴性乳腺癌的银行中,与 EMT 特征不明显或几乎没有 EMT 的肿瘤相比,表现出 EMT 特征的肿瘤明显更具血管生成性,并且浸润了更多数量的髓样细胞。总之,我们的研究结果表明,EMT 程序在癌细胞中触发可溶性介质的表达,这些介质在体内刺激血管生成并募集髓样细胞,这反过来可能有利于癌症扩散。