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本文引用的文献

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Molecular mechanisms of hepatic fibrosis in non-alcoholic steatohepatitis.非酒精性脂肪性肝炎肝纤维化的分子机制。
Dig Dis. 2010;28(1):229-35. doi: 10.1159/000282094. Epub 2010 May 7.
2
A standardized aqueous extract of Anoectochilus formosanus ameliorated thioacetamide-induced liver fibrosis in mice: the role of Kupffer cells.台湾金线莲标准化水提取物改善硫代乙酰胺诱导的小鼠肝纤维化:库普弗细胞的作用
Biosci Biotechnol Biochem. 2010;74(4):781-7. doi: 10.1271/bbb.90824. Epub 2010 Apr 7.
3
Enhanced metabolic flexibility associated with elevated adiponectin levels.与脂联素水平升高相关的增强代谢灵活性。
Am J Pathol. 2010 Mar;176(3):1364-76. doi: 10.2353/ajpath.2010.090647. Epub 2010 Jan 21.
4
Adiponectin knockout mice on high fat diet develop fibrosing steatohepatitis.高脂饮食喂养的脂联素基因敲除小鼠会发展为纤维化脂肪性肝炎。
J Gastroenterol Hepatol. 2009 Oct;24(10):1669-76. doi: 10.1111/j.1440-1746.2009.06039.x.
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Systemic fate of the adipocyte-derived factor adiponectin.脂肪细胞衍生因子脂联素的全身命运
Diabetes. 2009 Sep;58(9):1961-70. doi: 10.2337/db08-1750. Epub 2009 Jul 6.
6
Hypoxia-inducible factor 1alpha induces fibrosis and insulin resistance in white adipose tissue.缺氧诱导因子1α可诱导白色脂肪组织纤维化和胰岛素抵抗。
Mol Cell Biol. 2009 Aug;29(16):4467-83. doi: 10.1128/MCB.00192-09. Epub 2009 Jun 22.
7
Adiponectin prevents progression of steatohepatitis in mice by regulating oxidative stress and Kupffer cell phenotype polarization.脂联素通过调节氧化应激和枯否细胞表型极化防止小鼠脂肪性肝炎进展。
Hepatol Res. 2009 Jul;39(7):724-38. doi: 10.1111/j.1872-034X.2009.00509.x. Epub 2009 Mar 27.
8
Effects of adiponectin transgenic expression in liver of nonalcoholic steatohepatitis model mice.脂联素转基因表达对非酒精性脂肪性肝炎模型小鼠肝脏的影响。
Metabolism. 2009 Jul;58(7):901-8. doi: 10.1016/j.metabol.2009.03.004.
9
Adiponectin in health and disease: evaluation of adiponectin-targeted drug development strategies.健康与疾病中的脂联素:脂联素靶向药物开发策略评估
Trends Pharmacol Sci. 2009 May;30(5):234-9. doi: 10.1016/j.tips.2009.02.004. Epub 2009 Apr 7.
10
Serum adiponectin levels in different types of non alcoholic liver disease. Correlation with steatosis, necroinflammation and fibrosis.不同类型非酒精性肝病患者的血清脂联素水平。与脂肪变性、坏死性炎症和纤维化的相关性。
Acta Gastroenterol Belg. 2008 Oct-Dec;71(4):355-60.

脂联素通过 PPARγ 依赖和非依赖机制调节肝星状细胞的活化。

Adiponectin regulation of stellate cell activation via PPARγ-dependent and -independent mechanisms.

机构信息

Division of Digestive and Liver Diseases, Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas, USA.

出版信息

Am J Pathol. 2011 Jun;178(6):2690-9. doi: 10.1016/j.ajpath.2011.02.035.

DOI:10.1016/j.ajpath.2011.02.035
PMID:21641391
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3124230/
Abstract

In this study, we elucidated the mechanism by which adiponectin modulates hepatic stellate cell activation and fibrogenesis. Adiponectin-overexpressing transgenic mice receiving thioacetamide were resistant to fibrosis, compared with controls. In contrast, adiponectin-null animals developed severe fibrosis. Expression of collagen α1(I) and α-smooth muscle actin (α-SMA) mRNAs were significantly lower in adiponectin-overexpressing mice, compared with controls. In wild-type stellate cells exposed to a lentivirus encoding adiponectin, expression of peroxisome proliferator-activated receptor-γ (PPARγ), SREBP1c, and CEBPα mRNAs was significantly increased (3.2-, 4.1-, and 2.2-fold, respectively; n = 3; P < 0.05, adiponectin virus versus control), consistent with possible activation of an adipogenic transcriptional program. Troglitazone, a PPARγ agonist, strongly suppressed up-regulation of collagen α1(I) and α-SMA mRNA in stellate cells isolated from wild-type mice; however, stellate cells from adiponectin-null animals failed to respond to troglitazone. Furthermore, in isolated stellate cells in which PPARγ was depleted using an adenovirus-Cre-recombinase system and in which adiponectin was also overexpressed, collagen α1(I) and α-SMA were significantly inhibited. We conclude that the PPARγ effect on stellate cell activation and the fibrogenic cascade appears to be adiponectin-dependent; however, the inhibitory effect of adiponectin on stellate cell activation was not dependent on PPARγ, suggesting the presence of PPARγ-dependent as well as independent pathways in stellate cells.

摘要

在这项研究中,我们阐明了脂联素调节肝星状细胞活化和纤维化的机制。与对照组相比,接受硫代乙酰胺的脂联素过表达转基因小鼠对纤维化具有抗性。相比之下,脂联素缺失的动物则发生严重的纤维化。与对照组相比,脂联素过表达小鼠的胶原 α1(I)和 α-平滑肌肌动蛋白 (α-SMA)mRNA 的表达明显降低。在暴露于编码脂联素的慢病毒的野生型星状细胞中,过氧化物酶体增殖物激活受体-γ (PPARγ)、SREBP1c 和 CEBPα mRNA 的表达显著增加(分别为 3.2 倍、4.1 倍和 2.2 倍;n = 3;P < 0.05,脂联素病毒与对照相比),这与可能激活脂肪生成转录程序一致。PPARγ 激动剂曲格列酮强烈抑制从野生型小鼠分离的星状细胞中胶原 α1(I)和 α-SMA mRNA 的上调;然而,脂联素缺失动物的星状细胞对曲格列酮无反应。此外,在使用腺病毒-Cre-重组酶系统耗尽 PPARγ 的分离星状细胞中和也过表达脂联素的星状细胞中,胶原 α1(I)和 α-SMA 显著被抑制。我们得出结论,PPARγ 对星状细胞活化和纤维发生级联的作用似乎依赖于脂联素;然而,脂联素对星状细胞活化的抑制作用不依赖于 PPARγ,这表明星状细胞中存在 PPARγ 依赖和非依赖途径。