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Cancer-associated fibroblasts and M2-polarized macrophages synergize during prostate carcinoma progression

间质细胞 癌症研究 生物 癌相关成纤维细胞 间充质干细胞 肿瘤微环境 癌症 癌细胞 前列腺癌 血管生成 单核细胞 肿瘤进展 上皮-间质转换 免疫学 转移 细胞生物学 肿瘤细胞 遗传学
作者
Giuseppina Comito,Elisa Giannoni,Coral Pons Segura,Pedro Barcellos‐de‐Souza,Maria Rosaria Raspollini,Gianna Baroni,Michele Lanciotti,Sergio Serni,Paola Chiarugi
出处
期刊:Oncogene [Springer Nature]
卷期号:33 (19): 2423-2431 被引量:519
标识
DOI:10.1038/onc.2013.191
摘要

Inflammation is now acknowledged as an hallmark of cancer. Cancer-associated fibroblasts (CAFs) force a malignant cross talk with cancer cells, culminating in their epithelial–mesenchymal transition and achievement of stemness traits. Herein, we demonstrate that stromal tumor-associated cells cooperate to favor malignancy of prostate carcinoma (PCa). Indeed, prostate CAFs are active factors of monocyte recruitment toward tumor cells, mainly acting through stromal-derived growth factor-1 delivery and promote their trans-differentiation toward the M2 macrophage phenotype. The relationship between M2 macrophages and CAFs is reciprocal, as M2 macrophages are able to affect mesenchymal–mesenchymal transition of fibroblasts, leading to their enhanced reactivity. On the other side, PCa cells themselves participate in this cross talk through secretion of monocyte chemotactic protein-1, facilitating monocyte recruitment and again macrophage differentiation and M2 polarization. Finally, this complex interplay among cancer cells, CAFs and M2 macrophages, cooperates in increasing tumor cell motility, ultimately fostering cancer cells escaping from primary tumor and metastatic spread, as well as in activation of endothelial cells and their bone marrow-derived precursors to drive de novo angiogenesis. In keeping with our data obtained in vitro, the analysis of patients affected by prostate cancers at different clinical stages revealed a clear increase in the M2/M1 ratio in correlation with clinical values. These data, coupled with the role of CAFs in carcinoma malignancy to elicit expression of stem-like traits, should focus great interest for innovative strategies aimed at the co-targeting of inflammatory cells and fibroblasts to improve therapeutic efficacy.
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