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首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >Global Liver Gene Expression Analysis on a Murine Metabolic Syndrome Model Treated by Low-molecular-weight Lychee Fruit Polyphenol (Oligonol (R))
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Global Liver Gene Expression Analysis on a Murine Metabolic Syndrome Model Treated by Low-molecular-weight Lychee Fruit Polyphenol (Oligonol (R))

机译:低分子量荔枝果实多酚(Oligonol(R))治疗的小鼠代谢综合征模型的全球肝脏基因表达分析

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Background/Aim: Oligonol(R) (OLG) is a low-molecular-weight lychee fruit polyphenol mainly containing catechin-type monomers and oligomers of proanthocyanidins. Dietary OLG supplementation reportedly improves lipid metabolism disorder and lowers the visceral fat level in animal and human studies. Thus, we investigated the mechanism behind the protective and beneficial effects of OLG on a Western diet (WD)-induced metabolic syndrome (MetS) of a murine model. Materials and Methods: Using the C57BL/6J mouse for the MetS model, mice were divided into three groups: control (normal diet: ND), Western diet (WD) and WD + 0.5% OLG (OLG) groups. The WD group was fed a high-calorie (high fructose plus high fat) diet for 12 weeks to develop MetS. At week 12, all mice were sacrificed and the blood and liver were obtained for histological and biological examinations and RNA sequencing (RNA-Seq). Results: Body weight, liver weight, plasma triglycerides (TG), total cholesterol (T-Cho) and alanine aminotransferase (ATS) levels of both OLG groups were significantly lower than those of the WD group. On histological examination of the liver, the area of fatty deposits was shown to be suppressed by OLG administration. Expression gene analysis in the liver of WD-versus OLG-fed mice by RNA-Seq showed that 464/45,706 genes exhibited a significant change of expression (corrected p-value <0.05, absolute value of fold change (FC) >= 2). Gene network analysis showed that genes related to hepatic steatosis, liver inflammation and tumor invasion were inactivated in the OLG group. In particular, the lipid metabolism-related genes Lpin1, Adig and Cidea were regulated by OLG administration. Conclusion: OLG may function to suppress MetS and the progression of geriatric diseases in WD-fed mice by regulating the expression of lipid metabolism, inflammation and tumor-related genes in the liver.
机译:背景/目的:(OLG)是一种低分子量的荔枝果实多酚,主要含有儿茶素型单体和原花青素的低聚物。据报道,在动物和人体研究中,饮食中添加OLG可以改善脂质代谢紊乱并降低内脏脂肪水平。因此,我们调查了OLG对西方饮食(WD)诱导的鼠模型代谢综合征(MetS)的保护和有益作用的机制。材料和方法:将C57BL / 6J小鼠用于MetS模型,将小鼠分为三组:对照组(正常饮食:ND),西方饮食(WD)和WD + 0.5%OLG(OLG)组。 WD组接受高热量(高果糖加高脂肪)饮食12周以发展MetS。在第12周,处死所有小鼠,并获取血液和肝脏用于组织学和生物学检查以及RNA测序(RNA-Seq)。结果:两个OLG组的体重,肝重,血浆甘油三酸酯(TG),总胆固醇(T-Cho)和丙氨酸氨基转移酶(ATS)水平均显着低于WD组。在肝脏的组织学检查中,OLG给药可抑制脂肪沉积区域。通过RNA-Seq在WD对OLG喂养的小鼠肝脏中的表达基因分析表明,464 / 45,706个基因表现出明显的表达变化(校正的p值<0.05,倍数变化的绝对值(FC)> = 2) 。基因网络分析表明,与肝脂肪变性,肝炎和肿瘤浸润相关的基因在OLG组中被灭活。特别地,通过OLG管理来调节脂质代谢相关基因Lpin1,Adig和Cidea。结论:OLG可能通过调节肝脏脂质代谢,炎症反应和肿瘤相关基因的表达来抑制WD喂养小鼠的MetS和老年性疾病的进展。

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