首页> 美国卫生研究院文献>Saudi Pharmaceutical Journal : SPJ >Analysis of antioxidative and antiviral biomarkers β-amyrin β-sitosterol lupeol ursolic acid in Guiera senegalensis leaves extract by validated HPTLC methods
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Analysis of antioxidative and antiviral biomarkers β-amyrin β-sitosterol lupeol ursolic acid in Guiera senegalensis leaves extract by validated HPTLC methods

机译:验证过的HPTLC方法分析塞内加尔圭亚那叶提取物中的抗氧化和抗病毒生物标志物β-淀粉蛋白β-谷甾醇羽扇豆醇熊果酸

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摘要

Guiera senegalensis J.F. Gmel is a broad-spectrum African folk- medicinal plant, having activities against fowlpox and herpes viruses. Very recently, we have shown the anti-hepatitis B vius (HBV) potential of G. senegalensis leaves extract (GSLE). Here, we report the antioxidative and hepatoprotective efficacy of GSLE, including HPTLC quantification of four biomarkers of known antioxidative and antiviral activities. In cultured liver cells (HuH7) GSLE attenuated DCFH-induced oxidative stress and cytotoxicity. This was supported by in vitro DPPH radical-scavenging and β-carotene-linoleic acid bleaching assays that showed strong antioxidant activity of GSLE. Further, two simple and sensitive HPTLC methods (I and II) were developed and validated to quantify β-amyrin, β- sitosterol, lupeol, ursolic acid in GSLE. While HPTLC-I (hexane: ethylacetate; 75:25; v/v) enabled quantification of β-amyrin (Rf = 0.39; 20.64 μg/mg) and β-sitosterol (Rf = 0.25; 18.56 μg/mg), HPTLC-II (chloroform: methanol; 97:3; v/v) allowed estimation of lupeol (Rf = 0.47; 6.72 μg/mg) and ursolic acid (Rf = 0.23; 5.81 μg/mg) in GSLE. Taken together, the identified biomarkers strongly supported the antioxidant and anti-HBV potential of GSLE, suggesting its activity via abating the oxidative stress. To our knowledge, this is the first report on HPTLC analysis of these biomarkers in G. senegalensis that could be adopted for standardization and quality-control of herbal-formulations.
机译:塞内加尔的圭亚那J.F. Gmel是一种广谱的非洲民间药用植物,具有抗禽痘和疱疹病毒的活性。最近,我们显示了塞内加尔加纳斯叶提取物(GSLE)的抗乙型肝炎病毒(HBV)潜力。在这里,我们报告了GSLE的抗氧化和保肝功效,包括HPTLC定量的四种已知抗氧化和抗病毒活性的生物标志物。在培养的肝细胞(HuH7)中,GSLE减弱了DCFH诱导的氧化应激和细胞毒性。体外DPPH自由基清除和β-胡萝卜素-亚油酸漂白试验证明了GSLE具有很强的抗氧化活性。此外,开发并验证了两种简单而灵敏的HPTLC方法(I和II)以定量检测GSLE中的β-胰岛淀粉蛋白,β-谷甾醇,羽扇豆酚,熊果酸。虽然HPTLC-I(己烷:乙酸乙酯; 75:25; v / v)能够定量测定β-淀粉蛋白(Rf = 0.39;20.64μg/ mg)和β-谷甾醇(Rf = 0.25;18.56μg/ mg),HPTLC-I II(氯仿:甲醇; 97∶3; v / v)允许估计GSLE中的羽扇豆酚(Rf = 0.47;6.72μg/ mg)和熊果酸(Rf = 0.23;5.81μg/ mg)。综上所述,已鉴定的生物标记物强烈支持GSLE的抗氧化剂和抗HBV潜力,表明其活性通过减轻氧化应激而发挥作用。据我们所知,这是关于塞内加尔牛肝菌中这些生物标记物的HPTLC分析的第一份报告,可用于草药制剂的标准化和质量控制。

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