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细胞特异性过氧化物酶体增殖物激活受体 γ 缺失赋予非实质细胞中该核受体抗炎和抗纤维化特性。

Cell-specific PPARγ deficiency establishes anti-inflammatory and anti-fibrogenic properties for this nuclear receptor in non-parenchymal liver cells.

机构信息

Department of Biochemistry and Molecular Genetics, Hospital Clínic-IDIBAPS-Esther Koplowitz Center, Barcelona, Spain.

出版信息

J Hepatol. 2013 Nov;59(5):1045-53. doi: 10.1016/j.jhep.2013.06.023. Epub 2013 Jul 2.

Abstract

BACKGROUND & AIMS: PPARγ plays an essential role in the transcriptional regulation of genes involved in lipid and glucose metabolism, insulin sensitivity, and inflammation. We recently demonstrated that PPARγ plays a causative role in hepatocyte lipid deposition, contributing to the pathogenesis of hepatic steatosis. In this study, we investigated the role of PPARγ in the inflammatory and fibrogenic response of the liver.

METHODS

Heterozygous floxed/null Cre/LoxP mice with targeted deletion of PPARγ in either hepatocytes (Alb-Cre), macrophages (LysM-Cre) or hepatic stellate cells (HSCs) (aP2-Cre) were submitted to carbon tetrachloride (CCl4) liver injury. Further analyses were performed in precision-cut liver slices (PCLS) and primary cultures of hepatocytes, macrophages, and HSCs.

RESULTS

LysM-Cre mice displayed an exacerbated response to chronic CCl4 injury and showed higher necroinflammatory injury, lipid peroxidation, inflammatory infiltrate, cleaved-caspase-3 and caspase 3/7 activity, and COX-2, TNF-α, CXCL2, and IL-1β expression than Alb-Cre and control mice. The deleterious effects of PPARγ disruption in liver macrophages were confirmed in an acute model of CCl4 injury as well as in PCLS incubated with LPS. Moreover, LysM-Cre mice showed an aggravated fibrogenic response to CCl4, as revealed by more prominent Sirius Red and Masson's trichrome staining, elevated hydroxyproline content and induced α-SMA and TIMP-1 expression. Importantly, aP2-Cre mice with specific disruption of PPARγ in HSCs, as confirmed by immunocytochemical analysis of individual liver cells, also showed exacerbated liver damage and fibrogenic response to CCl4.

CONCLUSIONS

These data unveil anti-inflammatory and anti-fibrogenic roles for PPARγ in non-parenchymal liver cells.

摘要

背景与目的

PPARγ 在涉及脂质和葡萄糖代谢、胰岛素敏感性和炎症的基因的转录调控中发挥着重要作用。我们最近证明,PPARγ 在肝细胞脂质沉积中起因果作用,导致肝脂肪变性的发病机制。在这项研究中,我们研究了 PPARγ 在肝脏炎症和纤维化反应中的作用。

方法

靶向敲除肝细胞(Alb-Cre)、巨噬细胞(LysM-Cre)或肝星状细胞(HSCs)(aP2-Cre)中 PPARγ 的杂合 floxed/null Cre/LoxP 小鼠接受四氯化碳(CCl4)肝损伤。进一步的分析在精密切割肝切片(PCLS)和原代培养的肝细胞、巨噬细胞和 HSCs 中进行。

结果

LysM-Cre 小鼠在慢性 CCl4 损伤中表现出加剧的反应,表现出更高的坏死性炎症损伤、脂质过氧化、炎症浸润、裂解 caspase-3 和 caspase 3/7 活性以及 COX-2、TNF-α、CXCL2 和 IL-1β 的表达高于 Alb-Cre 和对照小鼠。PPARγ 破坏在肝巨噬细胞中的有害影响在 CCl4 损伤的急性模型以及用 LPS 孵育的 PCLS 中得到了证实。此外,LysM-Cre 小鼠在 CCl4 中表现出加剧的纤维化反应,如天狼星红和 Masson 三色染色更明显、羟脯氨酸含量升高以及诱导的α-SMA 和 TIMP-1 表达。重要的是,通过对单个肝细胞的免疫细胞化学分析证实了 aP2-Cre 小鼠中 HSCs 中 PPARγ 的特异性破坏,也表现出对 CCl4 的加剧肝损伤和纤维化反应。

结论

这些数据揭示了非实质细胞中 PPARγ 的抗炎和抗纤维化作用。

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