Beneficial Effect of Fenofibrate in Combination with Silymarin on Parameters of Hereditary Hypertriglyceridemia-Induced Disorders in an Animal Model of Metabolic Syndrome.

IF 3.9 3区 工程技术 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biomedicines Pub Date : 2025-01-16 DOI:10.3390/biomedicines13010212
Jan Soukop, Ludmila Kazdová, Martina Hüttl, Hana Malínská, Irena Marková, Olena Oliyarnyk, Denisa Miklánková, Soňa Gurská, Zuzana Rácová, Martin Poruba, Rostislav Večeřa
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Abstract

Background: Hypertriglyceridemia has serious health risks such as cardiovascular disease, type 2 diabetes mellitus, nephropathy, and others. Fenofibrate is an effective hypolipidemic drug, but its benefits for ameliorating disorders associated with hypertriglyceridemia failed to be proven in clinical trials. Methods: To search for possible causes of this situation and possibilities of their favorable influence, we tested the effect of FF monotherapy and the combination of fenofibrate with silymarin on metabolic disorders in a unique model of hereditary hypertriglyceridemic rats (HHTg). Results: Fenofibrate treatment (100 mg/kg BW/day for four weeks) significantly decreased serum levels of triglyceride, (-77%) and free fatty acids (-29%), the hepatic accumulation of triglycerides, and the expression of genes encoding transcription factors involved in lipid metabolism (Srebf2, Nr1h4. Rxrα, and Slco1a1). In contrast, the hypertriglyceridemia-induced ectopic storage of lipids in muscles, the heart, and kidneys reduced glucose utilization in muscles and was not affected. In addition, fenofibrate reduced the activity of the antioxidant system, including Nrf2 expression (-35%) and increased lipoperoxidation in the liver and, to a lesser extent, in the kidneys and heart. Adding silymarin (micronized form, 600 mg/kg BW/day) to fenofibrate therapy increased the synthesis of glycogen in muscles, (+36%) and reduced hyperinsulinemia (-34%). In the liver, it increased the activity of the antioxidant system, including PON-1 activity and Nrf2 expression, and reduced the formation of lipoperoxides. The beneficial effect of combination therapy on the parameters of oxidative stress and lipoperoxidation was also observed, to a lesser extent, in the heart and kidneys. Conclusions: Our results suggest the potential beneficial use of the combination of FF with SLM in the treatment of hypertriglyceridemia-induced metabolic disorders.

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非诺贝特联合水飞蓟素对代谢综合征动物模型中遗传性高甘油三酯血症相关疾病参数的有益影响
背景:高甘油三酯血症具有严重的健康风险,如心血管疾病、2型糖尿病、肾病等。非诺贝特是一种有效的降血脂药物,但其改善与高甘油三酯血症相关疾病的益处未能在临床试验中得到证实。方法:为了寻找这种情况的可能原因及其有利影响的可能性,我们在一种独特的遗传性高甘油三酯血症大鼠(HHTg)模型中测试了FF单药治疗和非诺贝特与水飞蓟素联合治疗代谢紊乱的效果。结果:非诺贝特治疗(100 mg/kg体重/天,持续4周)显著降低血清甘油三酯水平(-77%)和游离脂肪酸水平(-29%),降低肝脏甘油三酯积累,以及编码脂质代谢相关转录因子的基因表达(Srebf2, Nr1h4)。Rxrα和Slco1a1)。相反,高甘油三酯血症引起的脂肪在肌肉、心脏和肾脏中的异位储存降低了肌肉中的葡萄糖利用,但不受影响。此外,非诺贝特降低了抗氧化系统的活性,包括Nrf2的表达(-35%),增加了肝脏的脂质过氧化,并在较小程度上增加了肾脏和心脏的脂质过氧化。在非诺贝特治疗中添加水飞蓟素(微细形式,600 mg/kg体重/天)可增加肌肉中糖原的合成(+36%)并降低高胰岛素血症(-34%)。在肝脏中,它增加了抗氧化系统的活性,包括PON-1活性和Nrf2的表达,并减少了脂过氧化物的形成。在心脏和肾脏中,联合治疗对氧化应激和脂质过氧化参数的有益影响也被观察到,在较小程度上。结论:我们的研究结果表明FF联合SLM治疗高甘油三酯血症引起的代谢紊乱可能有益。
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来源期刊
Biomedicines
Biomedicines Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
5.20
自引率
8.50%
发文量
2823
审稿时长
8 weeks
期刊介绍: Biomedicines (ISSN 2227-9059; CODEN: BIOMID) is an international, scientific, open access journal on biomedicines published quarterly online by MDPI.
期刊最新文献
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