医学
基质
癌症
胰腺
病理
胰腺上皮内瘤变
免疫组织化学
转移
生物
上皮-间质转换
癌变
内科学
作者
Delphine Goehrig,Jérémy Nigri,Rémi Samain,Zhichong Wu,Paola Cappello,Gaëlle Gabiane,Xinyi Zhang,Yajie Zhao,In San Kim,M. Chanal,Roberta Curto,Valérie Hervieu,Christelle De La Fouchardiere,Francesco Novelli,Pascale Milani,Richard Tomasini,Corinne Bousquet,Philippe Bertolino,Ana Hennino
出处
期刊:Gut
[BMJ]
日期:2019-04-01
卷期号:68 (4): 693-707
被引量:34
标识
DOI:10.1136/gutjnl-2018-317570
摘要
Objective Pancreatic cancer is associated with an abundant stromal reaction leading to immune escape and tumour growth. This massive stroma drives the immune escape in the tumour. We aimed to study the impact of βig-h3 stromal protein in the modulation of the antitumoural immune response in pancreatic cancer. Design We performed studies with p48-Cre;KrasG12D, pdx1-Cre;KrasG12D;Ink4a/Arffl/fl, pdx1-Cre;KrasG12D; p53R172H mice and tumour tissues from patients with pancreatic ductal adenocarcinoma (PDA). Some transgenic mice were given injections of anti-βig-h3, anti-CD8, anti-PD1 depleting antibodies. Tumour growth as well as modifications in the activation of local immune cells were analysed by flow cytometry, immunohistochemistry and immunofluorescence. Tissue stiffness was measured by atomic force microscopy. Results We identified βig-h3 stromal-derived protein as a key actor of the immune paracrine interaction mechanism that drives pancreatic cancer. We found that βig-h3 is highly produced by cancer-associated fibroblasts in the stroma of human and mouse. This protein acts directly on tumour-specific CD8+ T cells and F4/80 macrophages. Depleting βig-h3 in vivo reduced tumour growth by enhancing the number of activated CD8+ T cell within the tumour and subsequent apoptotic tumour cells. Furthermore, we found that targeting βig-h3 in established lesions released the tissue tension and functionally reprogrammed F4/80 macrophages in the tumour microenvironment. Conclusions Our data indicate that targeting stromal extracellular matrix protein βig-h3 improves the antitumoural response and consequently reduces tumour weight. Our findings present βig-h3 as a novel immunological target in pancreatic cancer.
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