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Exosomes Induce Fibroblast Differentiation into Cancer-Associated Fibroblasts through TGFβ Signaling

微泡 癌相关成纤维细胞 癌症研究 间质细胞 癌细胞 细胞生物学 生物 外体 膀胱癌 SMAD公司 癌症 转移 肿瘤微环境 化学 成纤维细胞 小RNA 细胞培养 转化生长因子 基因 生物化学 遗传学 肿瘤细胞
作者
Cassandra Ringuette Goulet,Geneviève Bernard,Sarah Tremblay,Stéphane Chabaud,Stéphane Bolduc,Frédéric Pouliot
出处
期刊:Molecular Cancer Research [American Association for Cancer Research]
卷期号:16 (7): 1196-1204 被引量:312
标识
DOI:10.1158/1541-7786.mcr-17-0784
摘要

Abstract A particularly important tumor microenvironment relationship exists between cancer cells and surrounding stromal cells. Fibroblasts, in response to cancer cells, become activated and exhibit myofibroblastic characteristics that favor invasive growth and metastasis. However, the mechanism by which cancer cells promote activation of healthy fibroblasts into cancer-associated fibroblasts (CAF) is still not well understood. Exosomes are nanometer-sized vesicles that shuttle proteins and nucleic acids between cells to establish intercellular communication. Here, bladder cancer–derived exosomes were investigated to determine their role in the activation of healthy primary vesical fibroblasts. Exosomes released by bladder cancer cells are internalized by fibroblasts and promoted the proliferation and expression of CAF markers. In addition, cancer cell–derived exosomes contain TGFβ and in exosome-induced CAFs SMAD-dependent signaling is activated. Furthermore, TGFβ inhibitors attenuated CAF marker expression in healthy fibroblasts. Therefore, these data demonstrate that bladder cancer cells trigger the differentiation of fibroblasts to CAFs by exosomes-mediated TGFβ transfer and SMAD pathway activation. Finally, exosomal TGFβ localized inside the vesicle and contributes 53.4% to 86.3% of the total TGFβ present in the cancer cell supernatant. This study highlights a new function for bladder cancer exosomes as novel modulators of stromal cell differentiation. Implication: This study identifies exosomal TGFβ as new molecular mechanism involved in cancer-associated fibroblast activation. Mol Cancer Res; 16(7); 1196–204. ©2018 AACR.
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