(+)Alpha-Lipoic Acid Regulates Lipid Metabolism Gene Expression and Lipidic Profile in a Cellular Model of Fatty Acid Overload

L. Longhitano, D. Tibullo, T. Zuppelli, Simone Ronsisvalle, E. La Spina, Anna Nicolosi, Maria Antoci, F. Sipala, Fabio Galvano, W. Currenti, Annalisa Santisi, A. M. Alanazi, Guido Zanghì, Emanuela Tropea, Giovanni Li Volti, I. Barbagallo
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Abstract

Background : Nonalcoholic fatty liver disease (NAFLD) is a prevalent condition characterized by hepatic fat accumulation, often progressing to severe liver injury, for which approved treatments are currently lacking. This study explores the potential therapeutic impact of alpha-lipoic acid (ALA), a natural compound crucial in lipid metabolism, on NAFLD using an in vitro model. Methods : HepG2 cells were treated with a palmitic acid:oleic acid (PA:OA) mixture, representing a cellular model of steatosis. Subsequent treatment with ALA at concentrations of 1 µM and 5 µM aimed to evaluate its effects on lipid content and metabolism. Real-time polymerase chain reaction (PCR), BODIPY staining, cytofluorimetric analysis, and lipidomics were used to assess gene expression, lipid droplet accumulation, and fatty acid profiles. Results : Our results showed that ALA significantly reduced lipid droplets in PA:OA-treated HepG2 cells, with a concentration-dependent effect. Analysis of fatty acid profiles demonstrated a decrease in palmitic acid levels with ALA treatment, while oleic acid reduction was observed only at the higher concentration. Moreover, ALA modulated the expression of genes involved in cholesterol biosynthesis and low-density lipoprotein (LDL) metabolism, indicating a potential role in lipid homeostasis. Further insights into molecular mechanisms revealed that ALA modulated peroxisome proliferator activated receptors (PPARs), specifically PPAR-alpha and PPAR-gamma, involved in fatty acid metabolism and insulin sensitivity. Finally, ALA counteracted the overexpression of thermo-genic genes induced by exogenous fatty acids, suggesting a regulatory role in energy dissipation pathways. Conclusion : In conclusion, this study highlights ALA as a therapeutic agent in mitigating lipid accumulation and dysregulation in NAFLD.
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(+)α-硫辛酸能调节脂肪酸超载细胞模型中的脂质代谢基因表达和脂质概况
背景:非酒精性脂肪肝(NAFLD)是一种普遍存在的疾病,其特点是肝脏脂肪堆积,通常会发展成严重的肝损伤,目前尚缺乏已获批准的治疗方法。本研究利用体外模型探讨了α-硫辛酸(ALA)这种对脂质代谢至关重要的天然化合物对非酒精性脂肪肝的潜在治疗作用。方法:用代表脂肪变性细胞模型的棕榈酸:油酸(PA:OA)混合物处理 HepG2 细胞。随后用浓度为 1 µM 和 5 µM 的 ALA 处理,以评估其对脂质含量和代谢的影响。采用实时聚合酶链反应(PCR)、BODIPY染色、细胞荧光分析和脂质组学评估基因表达、脂滴积累和脂肪酸谱。结果:我们的研究结果表明,ALA 能显著减少 PA:OA 处理的 HepG2 细胞中的脂滴,其效果与浓度有关。脂肪酸图谱分析表明,ALA 处理后棕榈酸水平下降,而油酸仅在较高浓度时才会减少。此外,ALA 还能调节参与胆固醇生物合成和低密度脂蛋白(LDL)代谢的基因的表达,表明其在脂质平衡中的潜在作用。对分子机制的进一步研究表明,ALA 可调节过氧化物酶体增殖激活受体(PPAR),特别是 PPAR-α 和 PPAR-γ,它们参与脂肪酸代谢和胰岛素敏感性。最后,ALA 抵消了外源脂肪酸诱导的热基因的过度表达,这表明它在能量消耗途径中起着调节作用。结论:总之,本研究强调了 ALA 在减轻非酒精性脂肪肝脂质积累和调节失调方面的治疗作用。
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