基因敲除
流式细胞术
细胞生长
巨噬细胞
RNA干扰
癌症研究
小干扰RNA
小发夹RNA
体外
生物
转化生长因子
单核细胞
细胞因子
细胞培养
免疫学
化学
分子生物学
细胞生物学
转染
核糖核酸
基因
生物化学
遗传学
作者
Wenjiang Yan,Xiao Liu,Hongxin Ma,Hualin Zhang,Xiaojia Song,Lifen Gao,Xiaohong Liang,Chunhong Ma
出处
期刊:Gut
[BMJ]
日期:2015-01-21
卷期号:64 (10): 1593-1604
被引量:261
标识
DOI:10.1136/gutjnl-2014-307671
摘要
Objective
Tumour-associated macrophages (TAMs) and their alternative activation contribute greatly to the development of hepatocellular carcinoma (HCC). Tim-3 is highly expressed on macrophages and regulates macrophage functions in several conditions. However, whether Tim-3 is involved in the activation and the function of TAMs has not been reported. Design
Tim-3 expression in HCC samples was evaluated by flow cytometry, immunohistochemistry and confocal analysis. We analysed the effects of Tim-3 knockdown on macrophages in growth of H22 tumour homografts in BALB/c mice. Tim-3 interference was performed by neutralising antibody, small interfering RNA or short hairpin RNA-expressing lentivirus. Cytokine production was evaluated by reverse transcription PCR, ELISA or Cytometric Bead Array. The effects of Tim-3 interference in macrophages were examined with regard to alternative activation of macrophages and proliferation and migration of Hepa1-6 cells. Cell growth curve, colony formation and transwell assays were involved to estimate cell proliferation and migration. Results
Tim-3 expression was significantly increased in both peripheral blood monocytes and TAMs in patients with HCC. The Tim-3 expression in monocytes/TAMs strongly correlated with higher tumour grades and the poor survival of patients with HCC. Consistently, HCC conditioned medium or transforming growth factor-β fostered Tim-3 expression and the alternative activation of macrophages. Moreover, Tim-3 interference in macrophages significantly inhibited the alternative activation of macrophages and suppressed HCC cell growth both in vitro and in vivo. Blocking interleukin 6 reversed the Tim-3-mediated effects on HCC cell growth in vitro. Conclusions
Tim-3 displays critical roles in microenvironment-induced activation and protumoral effects of TAMs in HCC. Interference of Tim-3 might be great potential in HCC therapy.
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