积雪草醇提液和水提液中生物活性成分的化学指纹图谱

Siti Nuurul Huda Mohammad Azmin , Mohd Shukri Mat Nor
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引用次数: 15

摘要

积雪草是一种草本植物,由于其生物活性化合物如芦丁、山奈酚、槲皮素、没食子酸、木犀草素和儿茶素的益处而被广泛用作药物。通常,这些生物活性化合物的含量取决于所使用的溶剂。因此,本研究旨在研究山奈酚、槲皮素、木犀草素、没食子酸、芦丁和儿茶素6种积雪草生物活性成分在乙醇和水乙醇提取物中的化学指纹图谱。采用浸渍法(固液法),以水、乙醇和50%乙醇为提取溶剂,提取积雪草中的生物活性成分。先用旋转蒸发器浓缩提取液,再用高效液相色谱法分析。计算了粗提物得率(% w/w),并建立了数学模型。并应用指数方程模型对枳实提取物提取率进行了预测。由方程得到了满意的结果,在R2值0.9967的情况下误差小于12.21%。此外,还解释了HPLC分析所得活性化合物的产率。HPLC结果表明,山奈酚以373.2 mg/g干粉(100%乙醇为提取溶剂)的生物活性最高。因此,本研究的发展可以扩展到评估该植物在制药和化妆品配方中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical fingerprint of Centella Asiatica’s bioactive compounds in the ethanolic and aqueous extracts

Centella asiatica is a herbal plant that is widely used as medicine due to the benefit of its bioactive compounds such as rutin, kaempferol, quercetin, gallic acid, luteolin and catechin. Typically, the amount of these bioactive compounds are varies depending on the solvent used. Therefore, this study aims to investigate the chemical fingerprint of six Centella asiatica’s bioactive compounds (kaempferol, quercetin, luteolin, gallic acid, rutin and catechin) in the ethanolic and aqueous ethanol extracts. Water, ethanol, and 50% aqueous ethanol were used as extracting solvents via maceration (solid-liquid) technique to extract bioactive compounds from C.asiatica. Rotary evaporator procedure was performed to concentrate the extracts before these crudes were analysed using HPLC instrument. The percentage yield of crude extract (% w/w) was calculated, and its mathematical model was reported in this study. The exponential equation model was also applied to predict the percentage yield of the C.asiatica extract. From the equation, satisfactory results have been obtained, which gave less than 12.21% error with 0.9967 of R2 value. Besides, the percentage yield of bioactive compounds resulting from HPLC analysis was also explained. HPLC result showed that kaempferol was the highest bioactive compound with 373.2 mg/g dry powder using 100% ethanol as extract solvent. Therefore, the development of this study can be extended to assess this plant potential in the formulation of pharmaceutical and cosmetic products.

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Advances in biomarker sciences and technology
Advances in biomarker sciences and technology Biotechnology, Clinical Biochemistry, Molecular Medicine, Public Health and Health Policy
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