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老年肝脏星状细胞中整合素α/β介导的肝细胞生长因子释放受损。

Impaired integrin α /β -mediated hepatocyte growth factor release by stellate cells of the aged liver.

作者信息

Rohn Friederike, Kordes Claus, Buschmann Tobias, Reichert Doreen, Wammers Marianne, Poschmann Gereon, Stühler Kai, Benk Amelie S, Geiger Fania, Spatz Joachim P, Häussinger Dieter

机构信息

Clinic of Gastroenterology, Hepatology and Infectious Diseases, Heinrich Heine University, Düsseldorf, Germany.

Institute for Molecular Medicine, Heinrich Heine University, Düsseldorf, Germany.

出版信息

Aging Cell. 2020 Apr;19(4):e13131. doi: 10.1111/acel.13131. Epub 2020 Mar 11.

Abstract

Hepatic blood flow and sinusoidal endothelial fenestration decrease during aging. Consequently, fluid mechanical forces are reduced in the space of Disse where hepatic stellate cells (HSC) have their niche. We provide evidence that integrin α /β is an important mechanosensor in HSC involved in shear stress-induced release of hepatocyte growth factor (HGF), an essential inductor of liver regeneration which is impaired during aging. The expression of the integrin subunits α and β decreases in liver and HSC from aged rats. CRISPR/Cas9-mediated integrin α and β knockouts in isolated HSC lead to lowered HGF release and impaired cellular adhesion. Fluid mechanical forces increase integrin α and laminin gene expression whereas integrin β remains unaffected. In the aged liver, laminin β2 and γ1 protein chains as components of laminin-521 are lowered. The integrin α knockout in HSC reduces laminin expression via mechanosensory mechanisms. Culture of HSC on nanostructured surfaces functionalized with laminin-521 enhances Hgf expression in HSC, demonstrating that these ECM proteins are critically involved in HSC function. During aging, HSC acquire a senescence-associated secretory phenotype and lower their growth factor expression essential for tissue repair. Our findings suggest that impaired mechanosensing via integrin α /β in HSC contributes to age-related reduction of ECM and HGF release that could affect liver regeneration.

摘要

衰老过程中肝血流量和肝血窦内皮窗孔减少。因此,肝星状细胞(HSC)所处的狄氏间隙中的流体机械力降低。我们提供的证据表明,整合素α/β是HSC中的一种重要机械传感器,参与剪切应力诱导的肝细胞生长因子(HGF)释放,HGF是肝脏再生的关键诱导因子,在衰老过程中会受损。老年大鼠肝脏和HSC中整合素亚基α和β的表达降低。在分离的HSC中,CRISPR/Cas9介导的整合素α和β基因敲除导致HGF释放降低和细胞黏附受损。流体机械力增加整合素α和层粘连蛋白基因的表达,而整合素β不受影响。在老年肝脏中,作为层粘连蛋白-521组成成分的层粘连蛋白β2和γ1蛋白链减少。HSC中的整合素α基因敲除通过机械传感机制降低层粘连蛋白的表达。在由层粘连蛋白-521功能化的纳米结构表面培养HSC可增强HSC中Hgf的表达,表明这些细胞外基质蛋白在HSC功能中起关键作用。在衰老过程中,HSC获得衰老相关分泌表型并降低其对组织修复至关重要的生长因子表达。我们的研究结果表明,HSC中通过整合素α/β的机械传感受损导致与年龄相关的细胞外基质减少和HGF释放降低,这可能影响肝脏再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d72/7189994/a07364131d6d/ACEL-19-e13131-g001.jpg

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