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Curcumin Protects Hepatic Stellate Cells against Leptin-Induced Activation in Vitro by Accumulating Intracellular Lipids

机译:姜黄素通过积累细胞内脂质保护肝星状细胞免受瘦素诱导的体外激活。

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摘要

Obesity and type II diabetes mellitus are often associated with hyperleptinemia and commonly accompanied by nonalcoholic steatohepatitis, which could cause hepatic fibrosis. During hepatic fibrogenesis, the major effectors hepatic stellate cells (HSCs) become active, coupling with depletion of cellular lipid droplets and downexpression of genes relevant to lipid accumulation. Accumulating evidence supports the proposal that recovering the accumulation of lipids would inhibit HSC activation. We recently reported that leptin stimulated HSC activation, which was eliminated by curcumin, a phytochemical from turmeric. The current study was designed to explore the underlying mechanisms, focusing on their effects on the level of intracellular lipids. We hypothesized that one of the mechanisms by which leptin stimulated HSC activation was to stimulate the depletion of intracellular lipids, which could be abrogated by curcumin by inducing expression of genes relevant to lipid accumulation. In this report, we observed that leptin dose dependently reduced levels of intracellular fatty acids and triglycerides in passaged HSCs, which were eliminated by curcumin. The phytochemical abrogated the impact of leptin on inhibiting the activity of AMP-activated protein kinase (AMPK) in HSCs in vitro. The activation of AMPK resulted in inducing expression of genes relevant to lipid accumulation and increasing intracellular lipids in HSCs in vitro. In summary, curcumin eliminated stimulatory effects of leptin on HSC activation and increased AMPK activity, leading to inducing expression of genes relevant to lipid accumulation and elevating the level of intracellular lipids. These results provide novel insights into mechanisms of curcumin in inhibiting leptin-induced HSC activation.
机译:肥胖和II型糖尿病通常与高脂血症有关,并通常伴有非酒精性脂肪性肝炎,这可能会引起肝纤维化。在肝纤维化过程中,主要效应子肝星状细胞(HSC)变得活跃,并伴随着细胞脂质滴的消耗和与脂质蓄积相关的基因的下表达。越来越多的证据支持这样的提议,即恢复脂质的积累会抑制HSC的活化。我们最近报道,瘦素刺激HSC活化,姜黄素是姜黄的一种植物化学成分,它被消除了。当前的研究旨在探索潜在的机制,重点在于其对细胞内脂质水平的影响。我们假设瘦素刺激HSC活化的机制之一是刺激细胞内脂质的消耗,姜黄素可以通过诱导与脂质蓄积相关的基因表达来消除其消耗。在此报告中,我们观察到瘦素剂量依赖性地降低了传代的HSC中细胞内脂肪酸和甘油三酸酯的水平,而姜黄素消除了该水平。植物化学物质消除了瘦素在体外抑制HSC中AMP激活的蛋白激酶(AMPK)活性的影响。 AMPK的激活导致诱导与脂质积累相关的基因的表达并增加体外HSC中的细胞内脂质。总之,姜黄素消除了瘦素对HSC活化的刺激作用,并增加了AMPK活性,从而诱导了与脂质蓄积有关的基因表达并提高了细胞内脂质的水平。这些结果提供了姜黄素抑制瘦素诱导的HSC激活机制的新见解。

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    Tang, Youcai; Chen, Anping;

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  • 年度 2010
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  • 正文语种 en
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