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肝脏乳铁传递蛋白减少在慢性非酒精性脂肪性肝病模型中诱发肝脂肪变性。

Decreased Hepatic Lactotransferrin Induces Hepatic Steatosis in Chronic Non-Alcoholic Fatty Liver Disease Model.

作者信息

Lee Sungmin, Son Beomseok, Jeon Jaewan, Park Gaeul, Kim Hyunwoo, Kang Hyunkoo, Youn HyeSook, Jo Sunmi, Song Jie-Young, Youn BuHyun

机构信息

Department of Integrated Biological Science, Pusan National University, Busan, Republic of Korea.

Department of Radiation Oncology, Haeundae Paik Hospital, Inje University School of Medicine, Busan, Republic of Korea.

出版信息

Cell Physiol Biochem. 2018;47(6):2233-2249. doi: 10.1159/000491535. Epub 2018 Jul 5.

Abstract

BACKGROUND/AIMS: Non-alcoholic fatty liver disease (NAFLD) is an emerging metabolic disease. Although it leads to severe hepatic diseases including steatohepatitis, cirrhosis, and hepatic cancer, little is known about therapy to prevent and cure hepatic steatosis, the first step of NAFLD. We conducted this investigation to unveil the mechanism of hepatic steatosis.

METHODS

We established a novel chronic NAFLD mouse model through whole body irradiation and verified the model through histological and biochemical analysis. To find molecular mechanism for hepatic steatosis, we analyzed hepatic transcriptomic profiles in this model and selected target molecule. To induce the expression of lactotransferrin (Ltf) and regulate the NAFLD, growth hormone (GH) and coumestrol was introduced to hepatocyte and mice. The universal effect of coumestrol was confirmed by administration of coumestrol to NAFLD mouse model induced by high-fructose, high-fat, and MCD diet.

RESULTS

It was observed that decreased hepatic Ltf expression led to excessive hepatic lipid accumulation in NAFLD mouse. Furthermore, we found that GH was decreased in irradiated mice and functioned as an upstream regulator of Ltf expression. It was observed that GH could stimulate Ltf expression and prevent uptake of dietary lipids in hepatocytes, leading to rescue of NAFLD. Finally, we suggested that coumestrol, a kind of isoflavonoid, could be used as an inducer of hepatic Ltf expression through cooperation with the GH signaling pathway both in vitro and in vivo.

CONCLUSIONS

Hepatic Ltf prevents hepatic steatosis through inhibition of dietary lipid uptake in radiation-induced NAFLD mouse model. We also suggest coumestrol as a drug candidate for prevention of NAFLD.

摘要

背景/目的:非酒精性脂肪性肝病(NAFLD)是一种新出现的代谢性疾病。尽管它会导致包括脂肪性肝炎、肝硬化和肝癌在内的严重肝脏疾病,但对于预防和治疗NAFLD的第一步——肝脂肪变性的疗法却知之甚少。我们开展这项研究以揭示肝脂肪变性的机制。

方法

我们通过全身照射建立了一种新型慢性NAFLD小鼠模型,并通过组织学和生化分析对该模型进行了验证。为了找到肝脂肪变性的分子机制,我们分析了该模型中的肝脏转录组图谱并筛选出了靶分子。为了诱导乳铁蛋白(Ltf)的表达并调节NAFLD,将生长激素(GH)和香豆雌酚引入肝细胞和小鼠体内。通过对由高果糖、高脂肪和MCD饮食诱导的NAFLD小鼠模型给予香豆雌酚,证实了香豆雌酚的普遍作用。

结果

观察到在NAFLD小鼠中肝脏Ltf表达降低导致肝脏脂质过度蓄积。此外,我们发现受照射小鼠体内的GH降低,并且其作为Ltf表达的上游调节因子发挥作用。观察到GH可以刺激Ltf表达并阻止肝细胞摄取膳食脂质,从而挽救NAFLD。最后,我们提出香豆雌酚这种异黄酮类化合物可通过在体外和体内与GH信号通路协同作用,用作肝脏Ltf表达的诱导剂。

结论

在辐射诱导的NAFLD小鼠模型中,肝脏Ltf通过抑制膳食脂质摄取来预防肝脂肪变性。我们还提出香豆雌酚作为预防NAFLD的候选药物。

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