首页> 美国卫生研究院文献>Aging (Albany NY) >Reduced production of laminin by hepatic stellate cells contributes to impairment in oval cell response to liver injury in aged mice
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Reduced production of laminin by hepatic stellate cells contributes to impairment in oval cell response to liver injury in aged mice

机译:肝星状细胞产生层粘连蛋白的减少导致衰老小鼠卵圆细胞对肝脏损伤的反应受损

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摘要

Aged liver is usually impaired in response to hepatic injury. Tissue-specific stem cells participate in the repair of tissue injury. However, how oval cells (OCs) respond to injury and how the process is regulated by tissue microenvironment in aged mice have not been fully understood. In this study, taking advantage of well-established murine OC activation model, we demonstrated that OCs were less activated upon injury in aged mice and the impairment was mainly attributed to dysfunction in their niche. Through analyzing global gene expression, we found that the genes differentially expressed in damaged young and aged mouse liver tissues were predominantly those required for the formation and remodeling of extracellular matrix. As one of the most important extracellular matrix components in the OC niche, laminin was shown to promote the proliferation of OCs. Not surprisingly, laminin was downregulated with aging. Consistent with the downregulation of genes encoding DNA-dependent protein kinase (DNA-PK) proteins in aged hepatic stellate cells (HSCs), inhibition of DNA-PK also led to reduced expression of laminin in HSCs. Moreover, impairment in OC activation caused by less supporting from DNA-damaged HSCs could be rescued by laminin. This study reveals a new cellular mechanism underlying impaired OCs functionality during aging.
机译:老年肝脏通常会因肝损伤而受损。组织特异性干细胞参与组织损伤的修复。但是,还没有完全了解卵圆形细胞(OCs)对损伤的反应以及如何通过衰老小鼠的组织微环境调节该过程。在这项研究中,利用成熟的小鼠OC激活模型,我们证明了OCs在衰老小鼠中受到损伤后被激活的程度较低,而损伤主要归因于它们的利基功能障碍。通过分析全局基因表达,我们发现在受损的年轻和老年小鼠肝组织中差异表达的基因主要是细胞外基质形成和重塑所需的基因。层粘连蛋白是OC生态位中最重要的细胞外基质成分之一,被证明促进OCs的增殖。毫不奇怪,层粘连蛋白随着衰老而下调。与衰老的肝星状细胞(HSC)中编码DNA依赖性蛋白激酶(DNA-PK)蛋白的基因下调相一致,DNA-PK的抑制还导致HSC中层粘连蛋白的表达降低。此外,层粘连蛋白可以挽救因DNA受损的HSC较少的支持而导致的OC激活受损。这项研究揭示了衰老过程中OCs功能受损的新细胞机制。

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