Dietary squalene supplementation decreases triglyceride species and modifies phospholipid lipidomic profile in the liver of a porcine model of non-alcoholic steatohepatitis

角鲨烯 脂质体 脂肪变性 甘油三酯 脂肪性肝炎 化学 磷脂 脂质代谢 内科学 脂类学 内分泌学 脂肪生成 生物化学 胆固醇 脂肪肝 生物 医学 疾病
作者
Luis V. Herrera‐Marcos,Roberto Martínez‐Beamonte,Carmen Arnal,Cristina Barranquero,Juan José Puente‐Lanzarote,Tania Herrero‐Continente,José Manuel Lou-Bonafonte,Gonzalo Gonzalo-Romeo,Gabriele Mocciaro,Benjamin Jenkins,Joaquín C. Surra,María Jesús Rodriguez‐Yoldi,Juan Carlos Burillo,Roberto Lasheras,Agustín Garcia‐Gil,Antonio Güemes,Albert Koulman,Jesús Osada
出处
期刊:Journal of Nutritional Biochemistry [Elsevier BV]
卷期号:112: 109207-109207 被引量:22
标识
DOI:10.1016/j.jnutbio.2022.109207
摘要

Squalene is a key minor component of virgin olive oil, the main source of fat in the Mediterranean diet, and had shown to improve the liver metabolism in rabbits and mice. The present research was carried out to find out whether this effect was conserved in a porcine model of hepatic steatohepatitis and to search for the lipidomic changes involved. The current study revealed that a 0.5% squalene supplementation to a steatotic diet for a month led to hepatic accumulation of squalene and decreased triglyceride content as well as area of hepatic lipid droplets without influencing cholesterol content or fiber areas. However, ballooning score was increased and associated with the hepatic squalene content. Of forty hepatic transcripts related to lipid metabolism and hepatic steatosis, only citrate synthase and a non-coding RNA showed decreased expressions. The hepatic lipidome, assessed by liquid chromatography-mass spectrometry in a platform able to analyze 467 lipids, revealed that squalene supplementation increased ceramide, Cer(36:2), and phosphatidylcholine (PC[32:0], PC[33:0] and PC[34:0]) species and decreased cardiolipin, CL(69:5), and triglyceride (TG[54:2], TG[55:0] and TG[55:2]) species. Plasma levels of interleukin 12p40 increased in pigs receiving the squalene diet. The latter also modified plasma lipidome by increasing TG(58:12) and decreasing non-esterified fatty acid (FA 14:0, FA 16:1 and FA 18:0) species without changes in total NEFA levels. Together this shows that squalene-induced changes in hepatic and plasma lipidomic profiles, non-coding RNA and anti-inflammatory interleukin are suggestive of an alleviation of the disease despite the increase in the ballooning score.
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