微泡
巨噬细胞移动抑制因子
转移
胰腺癌
癌症研究
生物
分泌物
癌症
医学
肿瘤微环境
小RNA
免疫学
细胞因子
内科学
基因
生物化学
肿瘤细胞
作者
Bruno Costa‐Silva,Nicole M. Aiello,Allyson J. Ocean,Swarnima Singh,Haiying Zhang,Basant Kumar Thakur,Annette Becker,Ayuko Hoshino,Milica Tešić Mark,Henrik Molina,Jenny Xiang,Tuo Zhang,Till-Martin Theilen,Guillermo García‐Santos,Caitlin Williams,Yonathan Ararso,Yujie Huang,Gonçalo Rodrigues,Tang‐Long Shen,Knut Jørgen Labori
摘要
Pancreatic ductal adenocarcinomas (PDACs) are highly metastatic with poor prognosis, mainly due to delayed detection. We hypothesized that intercellular communication is critical for metastatic progression. Here, we show that PDAC-derived exosomes induce liver pre-metastatic niche formation in naive mice and consequently increase liver metastatic burden. Uptake of PDAC-derived exosomes by Kupffer cells caused transforming growth factor β secretion and upregulation of fibronectin production by hepatic stellate cells. This fibrotic microenvironment enhanced recruitment of bone marrow-derived macrophages. We found that macrophage migration inhibitory factor (MIF) was highly expressed in PDAC-derived exosomes, and its blockade prevented liver pre-metastatic niche formation and metastasis. Compared with patients whose pancreatic tumours did not progress, MIF was markedly higher in exosomes from stage I PDAC patients who later developed liver metastasis. These findings suggest that exosomal MIF primes the liver for metastasis and may be a prognostic marker for the development of PDAC liver metastasis. Lyden and colleagues report that pancreatic cancer-derived exosomes induce a pre-metastatic niche in the liver by promoting TGFβ secretion from Kupffer cells, leading to fibronectin production in hepatic stellate cells and macrophage recruitment.
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