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Comparation of Hypolipidemic and Antioxidant Effects of Aqueous and Ethanol Extracts of Crataegus pinnatifida Fruit in High-Fat Emulsion-Induced Hyperlipidemia Rats

机译:山楂果油和乙醇提取物对高脂乳液诱导的高脂血症大鼠降脂和抗氧化作用的比较

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Background: Hawthorn ( Crataegus pinnatifida ) is a Chinese medicinal plant traditionally used in the treatment of hyperlipidemia. Recently, studies indicated free radical scavenging was one of the major pathways to alleviate hyperlipidemia. Moreover, hawthorn fruit is a rich source of phenols, which quench free radical and attenuate hyperlipidemia. However, the phenols vary with processing methods, especially solvent type. Objective: Our aim was to compare hypolipidemic and antioxidant effects of aqueous and ethanol extracts of hawthorn fruit in hyperlipidemia rats. Materials and Methods: After a 4-week treatment of high-fat emulsion, lipid profile levels and antioxidant levels of two extracts were determined using commercial analysis. Total phenols content in the extract of hawthorn fruit was determined colorimetrically by the Folin–Ciocalteu method. Results: Both ethanol and aqueous extracts of hawthorn fruit possessed hypolipidemic and antioxidant activities. Simultaneously, stronger activities were observed in ethanol extract. Besides, total phenols content in ethanol extract from the same quality of hawthorn fruit was 3.9 times more than that in aqueous extract. Conclusion: The obvious difference of hypolipidemic and antioxidant effects between ethanol extract and aqueous extract of hawthorn fruit was probably due to the presence of total phenols content, under the influence of extraction solvent. SUMMARY Ethanol extract of hawthorn fruit exhibited more favorable hypolipidemic and antioxidant effects than aqueous extract. The higher effects could be due to the higher content of total phenols that varies with extraction solvent. Abbreviations used : TC: Total cholesterol, TG: Triglyceride, LDL-C: Low-density lipoprotein cholesterol, HDL-C: High-density lipoprotein cholesterol, GSH-Px: Glutathione peroxidase, SOD: Superoxide dismutase, MDA: Malondialdehyde, CAT: Catalase, NO: Nitric oxide, NOS: Nitric oxide synthase, SR-BI: Scavenger receptor Class B Type I.
机译:背景:山楂(Crataegus pinnatifida)是传统上用于治疗高脂血症的中草药。最近,研究表明清除自由基是减轻高脂血症的主要途径之一。此外,山楂果实是酚的丰富来源,酚可淬灭自由基并减轻高脂血症。但是,酚类随加工方法(尤其是溶剂类型)的不同而不同。目的:我们的目的是比较山楂果实水和乙醇提取物对高脂血症大鼠的降血脂和抗氧化作用。材料和方法:经过4周的高脂乳化液处理后,使用商业分析法测定了两种提取物的脂质谱水平和抗氧化剂水平。用Folin-Ciocalteu法比色法测定山楂果实提取物中的总酚含量。结果:山楂果实的乙醇和水提物均具有降血脂和抗氧化活性。同时,在乙醇提取物中观察到更强的活性。此外,相同质量的山楂果实乙醇提取物中的总酚含量是水提取物中的3.9倍。结论:山楂果实乙醇提取物与水提取物在降血脂和抗氧化作用上的明显差异可能是由于在提取溶剂的影响下总酚含量的存在。小结山楂果实的乙醇提取物比水提取物具有更好的降血脂和抗氧化作用。较高的效果可能是由于总酚含量较高,随萃取溶剂而变化。使用的缩写:TC:总胆固醇,TG:甘油三酸酯,LDL-C:低密度脂蛋白胆固醇,HDL-C:高密度脂蛋白胆固醇,GSH-Px:谷胱甘肽过氧化物酶,SOD:超氧化物歧化酶,MDA:丙二醛,CAT:过氧化氢酶,NO:一氧化氮,NOS:一氧化氮合酶,SR-BI:清道夫受体B类I型。

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