| Literature DB >> 26327817 |
Yankai Wen1, Dechun Feng2, Hailong Wu1, Wenjun Liu1, Hongjie Li1, Fang Wang1, Qiang Xia1, Wei-Qiang Gao1, Xiaoni Kong1.
Abstract
The initial process in liver regeneration after partial hepatectomy involves the recruitment of immune cells and the release of cytokines. Osteopontin (OPN), a pro-inflammatory protein, plays critical roles in immune cell activation and migration. Although OPN has been implicated in the pathogenesis of many liver diseases, the role of OPN in liver regeneration remains obscure. In the present study, we found that serum and hepatic OPN protein levels were significantly elevated in wild-type (WT) mice after partial hepatectomy (PHx) and that bile ductal epithelia were the major cell source of hepatic OPN. Compared to WT mice, OPN knockout (KO) mice exhibited delayed liver regeneration after PHx. This delay in OPN(-/-) mice was attributed to impaired hepatic infiltration of macrophages and neutrophils, decreased serum and hepatic IL-6 levels, and blunted activation of macrophages after PHx. Furthermore, we demonstrate that the attenuated activation of macrophages is at least partially due to decreased hepatic and portal vein LPS levels in OPN(-/-) mice. In response to decreased IL-6 levels, the activation of signal transducer and transcription (Stat) 3 was reduced in hepatocytes of OPN(-/-) mice compared to WT mice after PHx. Consequently, hepatic activation of the downstream direct targets of IL6/Stat3, such as c-fos, c-jun, and c-myc, was also suppressed post-PHx in OPN(-/-) mice compared to WT mice. Collectively, these results support a unique role for OPN during the priming phase of liver regeneration, in which OPN enhances the recruitment of macrophages and neutrophils, and triggers hepatocyte proliferation through Kupffer cell-derived IL-6 release and the downstream activation of Stat3.Entities:
Keywords: Kupffer cell, IL-6, Stat3; Osteopontin, partial hepatectomy, liver regeneration
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Year: 2015 PMID: 26327817 PMCID: PMC4551759 DOI: 10.7150/ijbs.12118
Source DB: PubMed Journal: Int J Biol Sci ISSN: 1449-2288 Impact factor: 6.580
Fig 1OPN levels increase in the serum and regenerating liver after PHx. (A) Serum and (B) liver OPN levels were determined by ELISA at the indicated time points after PHx in WT mice (n = 4-10). The data are shown as the mean ± SEM. *P<0.05, **P<0.01, ***P<0.001 compared with 0 hour. (C) Immunohistochemistry of OPN in livers from WT mice and livers at 3 and 12 hours after PHx (200× magnification). At least three experiments were performed with similar results. (D) Immunofluorescence analysis showed co-staining of OPN and CK19 at 3 hours after PHx (200× magnification). Three independent experiments were performed with similar results.
Fig 2OPN deletion delays the peak of hepatocyte proliferation during liver regeneration after PHx. (A) Serum ALT and (B) AST activities were determined at different time points after PHx (n = 3-8). The data are shown as the mean ± SEM. (C) BrdU incorporation were measured in liver sections at the indicated time points after PHx (200× magnification). Quantitative analysis of BrdU labeling was performed (n = 3-7). The data are shown as the mean ± SEM. *P<0.05. (D) PCNA immunolabeling in liver sections after PHx (200× magnification). The number of PCNA positive cells in remnant liver lobes was counted in at least 5 fields per liver section (n = 3-7). The data are shown as the mean ± SEM. *P<0.05, **P<0.01. (E) The liver-to-body weight ratio was determined at the indicated time points after PHx (n = 3-8). The data are shown as the mean ± SEM. *P<0.05.
Fig 3OPN does not stimulate hepatocyte proliferation Primary hepatocytes isolated from WT mice were treated with rmOPN. (A) Hepatocyte lysates were collected 24 hours after OPN treatment and analyzed for PCNA mRNA expression (n = 3). The data are shown as the mean ± SEM. (B) Immunofluorescence for PCNA was performed 48 hours after treatment with 50 nM rmOPN (200× magnification). Three independent experiments were performed with similar results. (C) Quantitative analysis of PCNA immunolabeling was performed (n = 3). The data are shown as the mean ± SEM. RFC: relative fold change.
Fig 4Loss of OPN impairs the recruitment of macrophages and neutrophils into the regenerating liver. (A) Liver leukocytes were isolated and analyzed at 0 and 3 hours post-PHx, and the number of liver leukocytes (Neutrophil: Gr-1high CD11b+; Macrophage: CD11bint F4/80+) was calculated by multiplying the percentage of each population determined by the FACS data by the total number of leukocytes per liver (n = 4). The data are shown as the mean ± SEM. *P<0.05. Immunohistochemistry for (B) MPO and (C) F4/80 were performed in mouse liver sections at 3, 6, and 12 hours post-PHx (400× magnification). Quantitative analysis was performed (n = 3-5). The data are shown as the mean ± SEM. *P<0.05, **P<0.01. (D) MPO and (E) F4/80 relative expression levels were analyzed in livers after PHx (n = 3-4). The data are shown as the mean ± SEM. *P<0.05. HPF: high power field; RFC: relative fold change.
Fig 5OPN facilitates IL-6 release in the regenerating liver and isolated Kupffer cells. (A) Serum IL-6 levels were determined by ELISA after PHx (n = 4-6). The data are shown as the mean ± SEM. *P<0.05. (B) IL-6 mRNA expression in the liver was analyzed by qPCR (n = 3-5). The data are shown as the mean ± SEM. *P<0.05. (C) Kupffer cells were isolated from WT mouse livers and treated with 100 nM rmOPN. Cell culture supernatants were subjected to ELISA for IL-6 (n = 3). The data are shown as the mean ± SEM. (D) Cell lysates were collected for quantitative analysis of IL-6 mRNA (n = 3). The data are shown as the mean ± SEM. *P<0.05. RFC: relative fold change.
Fig 6OPN facilitates IL-6 production in Kupffer cells and promotes liver regeneration via activation of the Stat3 pathway. (A) Kupffer cells, hepatic stellate cells and hepatocytes were isolated from WT and OPN-/- mice after PHx and collected for quantitative analysis of IL-6 mRNA (n = 3-6). The data are shown as the mean ± SEM. **P<0.01. (B) Phosphorylation of Stat3 in regenerating livers was analyzed by western blot. Densitometric analysis of immunoblots is shown (n = 3). The data are shown as the mean ± SEM. *P<0.05, **P<0.01. (C) mRNA expression of c-fos, c-myc, and c-jun was analyzed by qPCR (n = 3-6). The data are shown as the mean ± SEM. *P<0.05, **P<0.01. RFC: relative fold change.