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Activated macrophages induce hepcidin expression in HuH7 hepatoma cells

机译:活化的巨噬细胞诱导人肝素在HuH7肝癌细胞中的表达

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摘要

Background Hepcidin is an iron regulatory peptide produced by the liver in response to inflammation and elevated systemic iron. Recent studies suggest that circulating monocytes and resident liver macrophages - Kupffer cells - may influence both basal and inflammatory expression of hepcidin. Design and Methods We used an in vitro co-culture model to investigate hepatocyte hepcidin regulation in the presence of activated THP1 macrophages. HuH7 hepatoma cells were co-cultured with differentiated THP1 macrophages for 24 h prior to the measurement of HuH7 hepcidin (HAMP) mRNA expression using quantitative polymerase chain reaction; and HAMP promoter activity using a luciferase reporter assay. Luciferase assays were performed using the wild type HAMP promoter, and constructs containing mutations in BMP/SMAD4, STAT3, C/EBP and E-BOX response elements. Neutralizing antibodies against interleukin-6, interleukin-1 beta, and the bone morphogenetic protein inhibitor noggin were used to identify the macrophage-derived cytokines involved in the regulation of HAMP expression. Results Co-culturing HuH7 cells with differentiated THP1 cells induced HAMP promoter activity and endogenous HAMP mRNA expression maximally after 24 h. This induction was fully neutralized in the presence of an interleukin-1 beta antibody, and fully attenuated by mutations of the proximal C/EBP or BMP/SMAD4 response elements. Conclusions Our data suggest that the interleukin-1 beta and bone morphogenetic protein signaling pathways are central to the regulation of HAMP expression by macrophages in this co-culture model.
机译:背景铁调素是肝脏响应炎症和全身性铁升高而产生的铁调节肽。最近的研究表明,循环单核细胞和驻留的肝巨噬细胞-库普弗细胞-可能会影响铁调素的基础和炎症表达。设计和方法我们使用体外共培养模型来研究在激活的THP1巨噬细胞存在下肝细胞铁调素的调节。将HuH7肝癌细胞与分化的THP1巨噬细胞共培养24 h,然后使用定量聚合酶链反应测量HuH7 hepcidin(HAMP)mRNA表达。荧光素酶报告基因检测HAMP启动子的活性。使用野生型HAMP启动子和包含BMP / SMAD4,STAT3,C / EBP和E-BOX反应元件突变的构建体进行萤光素酶测定。针对白介素-6,白介素-1β和骨形态发生蛋白抑制剂头蛋白的中和抗体被用于鉴定参与调节HAMP表达的巨噬细胞源性细胞因子。结果HuH7细胞与分化的THP1细胞共培养24h后诱导HAMP启动子活性和内源性HAMP mRNA表达最大。在白介素-1β抗体存在下,该诱导被完全中和,并且被近端C / EBP或BMP / SMAD4反应元件的突变完全减弱。结论我们的数据表明,在这种共培养模型中,白介素1β和骨形态发生蛋白信号通路是巨噬细胞调节HAMP表达的关键。

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