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转录因子 KLF2 介导他汀类药物诱导的肝内皮保护和旁分泌内皮-星状细胞失活。

The transcription factor KLF2 mediates hepatic endothelial protection and paracrine endothelial-stellate cell deactivation induced by statins.

机构信息

Hepatic Hemodynamic Laboratory, August Pi i Sunyer Institute for Biomedical Research (IDIBAPS), Hospital Clínic de Barcelona, Centro de Investigación Biomédica en Red en Enfermedades Hepáticas y Digestivas (CIBERehd), University of Barcelona, Barcelona, Spain.

出版信息

J Hepatol. 2013 Jan;58(1):98-103. doi: 10.1016/j.jhep.2012.08.026. Epub 2012 Sep 16.

Abstract

BACKGROUND & AIMS: Statins improve hepatic endothelial function and liver fibrosis in experimental models of cirrhosis, thus they have been proposed as therapeutic options to ameliorate portal hypertension syndrome. The transcription factor Kruppel-like factor 2 (KLF2) may be induced by statins in liver sinusoidal endothelial cells (SEC), orchestrating an efficient vasoprotective response. The present study aimed at characterizing whether KLF2 mediates statins-derived hepatic protection.

METHODS

Expression of KLF2 and its vasoprotective target genes was determined in SEC freshly isolated from control or CCl(4)-cirrhotic rats treated with four different statins (atorvastatin, mevastatin, simvastatin, and lovastatin), in the presence of mevalonate (or vehicle), under static or controlled shear stress conditions. KLF2-derived vasoprotective transcriptional programs were analyzed in SEC transfected with siRNA for KLF2 or siRNA-control, and incubated with simvastatin. Paracrine effects of SEC highly-expressing KLF2 on the activation status of rat and human hepatic stellate cells (HSC) were evaluated.

RESULTS

Statins administration to SEC induced significant upregulation of KLF2 expression. KLF2 upregulation was observed after 6h of treatment and was accompanied by induction of its vasoprotective programs. Simvastatin vasoprotection was inhibited in the presence of mevalonate, and was magnified in cells cultured under physiological shear stress conditions. Statin-dependent induction of vasoprotective genes was not observed when KLF2 expression was muted with siRNA. SEC overexpressing KLF2 induced quiescence of HSC through a KLF2-nitric oxide-guanylate cyclase-mediated paracrine mechanism.

CONCLUSIONS

Upregulation of hepatic endothelial KLF2-derived transcriptional programs by statins confers vasoprotection and stellate cells deactivation, reinforcing the therapeutic potential of these drugs for liver diseases that course with endothelial dysfunction.

摘要

背景与目的

他汀类药物可改善肝硬化实验模型中的肝内皮功能和肝纤维化,因此被提议作为改善门静脉高压综合征的治疗选择。转录因子 Kruppel 样因子 2(KLF2)可能在肝窦内皮细胞(SEC)中被他汀类药物诱导,协调有效的血管保护反应。本研究旨在确定 KLF2 是否介导他汀类药物衍生的肝保护作用。

方法

在存在甲羟戊酸(或载体)的情况下,使用四种不同的他汀类药物(阿托伐他汀、美伐他汀、辛伐他汀和洛伐他汀)处理新鲜分离的来自对照或 CCl4 诱导的肝硬化大鼠的 SEC 中,测定 KLF2 及其血管保护靶基因的表达,在静态或受控切应力条件下。使用 KLF2 或 siRNA 对照转染 SEC,并孵育辛伐他汀,分析 KLF2 衍生的血管保护转录程序。评估 SEC 高表达 KLF2 对大鼠和人肝星状细胞(HSC)激活状态的旁分泌作用。

结果

SEC 给予他汀类药物治疗可显著上调 KLF2 的表达。治疗 6 小时后观察到 KLF2 上调,并伴有其血管保护程序的诱导。在存在甲羟戊酸的情况下,辛伐他汀的血管保护作用受到抑制,而在生理切应力条件下培养的细胞中则增强。当沉默 KLF2 表达时,不会观察到依赖他汀类药物诱导的血管保护基因表达。SEC 过表达 KLF2 通过 KLF2-一氧化氮-鸟苷酸环化酶介导的旁分泌机制诱导 HSC 静止。

结论

他汀类药物上调肝内皮 KLF2 衍生的转录程序可赋予血管保护和星状细胞失活作用,增强这些药物治疗伴有内皮功能障碍的肝脏疾病的治疗潜力。

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