Microparticles mediated cross-talk between tumoral and endothelial cells promote the constitution of a pro-metastatic vascular niche through Arf6 up regulation.

Q2 Medicine Cancer Microenvironment Pub Date : 2014-08-01 Epub Date: 2014-01-15 DOI:10.1007/s12307-013-0142-2
Jennifer Pasquier, Hamda Al Thawadi, Pegah Ghiabi, Nadine Abu-Kaoud, Mahtab Maleki, Bella S Guerrouahen, Fabien Vidal, Bettina Courderc, Gwenael Ferron, Alejandra Martinez, Haya Al Sulaiti, Renuka Gupta, Shahin Rafii, Arash Rafii
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引用次数: 45

Abstract

The tumor stroma plays an essential role in tumor growth, resistance to therapy and occurrence of metastatic phenotype. Tumor vessels have been considered as passive conducts for nutrients but several studies have demonstrated secretion of pro-tumoral factors by endothelial cells. The failure of anti-angiogenic therapies to meet expectations raised by pre-clinical studies prompt us to better study the cross-talk between endothelial and cancer cells. Here, we hypothesized that tumor cells and the endothelium secrete bio-active microparticles (MPs) participating to a functional cross-talk. We characterized the cancer cells MPs, using breast and ovarian cancer cell lines (MCF7, MDA-MB231, SKOV3, OVCAR3 and a primary cell lines, APOCC). Our data show that MPs from mesenchymal-like cell lines (MDA-MB231, SKOV3 and APOCC) were able to promote an activation of endothelial cells through Akt phosphorylation, compared to MPs from epithelial-like cell lines (OVCAR3 and MCF7). The MPs from mesenchymal-like cells contained increased angiogenic molecules including PDGF, IL8 and angiogenin. The endothelial activation was associated to increased Arf6 expression and MPs secretion. Endothelial activation functionalized an MP dependent pro-tumoral vascular niche promoting cancer cells proliferation, invasiveness, stem cell phenotype and chemoresistance. MPs from cancer and endothelial cells displayed phenotypic heterogeneity, and participated to a functional cross-talk where endothelial activation by cancer MPs resulted in increased secretion of EC-MPs sustaining tumor cells. Such cross-talk may play a role in perfusion independent role of the endothelium.

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微颗粒介导的肿瘤细胞和内皮细胞之间的串扰通过Arf6上调促进了促转移血管生态位的形成。
肿瘤基质在肿瘤生长、治疗抵抗和转移表型的发生中起着至关重要的作用。肿瘤血管一直被认为是营养物质的被动通道,但一些研究已经证明内皮细胞分泌促肿瘤因子。抗血管生成疗法未能满足临床前研究提出的期望,促使我们更好地研究内皮细胞和癌细胞之间的串扰。在这里,我们假设肿瘤细胞和内皮细胞分泌生物活性微粒(MPs)参与功能性串扰。我们利用乳腺癌和卵巢癌细胞系(MCF7、MDA-MB231、SKOV3、OVCAR3和原代细胞系APOCC)对癌细胞MPs进行了表征。我们的数据显示,与来自上皮样细胞系(OVCAR3和MCF7)的MPs相比,来自间充质样细胞系(MDA-MB231、SKOV3和APOCC)的MPs能够通过Akt磷酸化促进内皮细胞的活化。来自间充质样细胞的MPs含有更多的血管生成分子,包括PDGF、IL8和血管生成素。内皮细胞活化与Arf6表达和MPs分泌增加有关。内皮细胞激活使MP依赖的促肿瘤血管生态位功能化,促进癌细胞增殖、侵袭性、干细胞表型和化疗耐药。来自癌症和内皮细胞的MPs表现出表型异质性,并参与功能性串扰,其中癌症MPs对内皮细胞的激活导致维持肿瘤细胞的EC-MPs分泌增加。这种串扰可能在内皮细胞的灌注不依赖作用中起作用。
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来源期刊
Cancer Microenvironment
Cancer Microenvironment Medicine-Oncology
CiteScore
4.90
自引率
0.00%
发文量
0
期刊介绍: Cancer Microenvironment is the official journal of the International Cancer Microenvironment Society (ICMS). It publishes original studies in all aspects of basic, clinical and translational research devoted to the study of cancer microenvironment. It also features reports on clinical trials. Coverage in Cancer Microenvironment includes: regulation of gene expression in the cancer microenvironment; innate and adaptive immunity in the cancer microenvironment, inflammation and cancer; tumor-associated stroma and extracellular matrix, tumor-endothelium interactions (angiogenesis, extravasation), cancer stem cells, the metastatic niche, targeting the tumor microenvironment: preclinical and clinical trials.
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