Investigation on the Phytochemical Analysis and Biological Activity of Daphne papyracea Wall. ex Steud. Leaf Extracts from Kumaun Himalaya

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Abstract

The aim of the present research is to examine the leaf extracts of D. papyracea Wall. ex Steud. for their phytochemicals and biological activity. Antimicrobial activities were determined by the disc diffusion method against gram-negative and positive bacterial strains. Qualitative estimations were done for the presence of various phytochemical classes. Quantitative determination of total phenolics, total flavonoids, and two in vitro antioxidant activities (DPPH and FRAP) was carried out using spectrophotometric methods. Phytochemical analysis unveiled the presence of cardiac glycosides, coumarins, and flavonoids in DM, DE, and DC extracts, but saponins were absent in all leaf extracts of D.papyracea. Antimicrobial activity tests revealed that only ethyl acetate extract (DEE) showed positive results at a zone of 14mm against the MTCC-1522 strain. The highest phenolic content was detected in hexane leaf extract (39.69±0.11 mg GAE/g), while the highest flavonoid content was found in methanolic leaf extract, i.e., 131.8±0.15 mg QE/g. The radical scavenging activity measurement was expressed in terms of IC50, and the methanolic extract exhibited the highest scavenging activity (60.50±0.01µg/mL). The highest reducing power (163.29±0.01 mg AA/g) was shown by the methanolic leaf extract. This study showed that D.papyracea is serviceable and may have a future in the pharmaceutical and cosmetic industries. Phytochemicals found in this also have virtuous efficacy.
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达芙妮草壁植物化学分析及生物活性研究。Steud交货。来自Kumaun喜马拉雅的叶子提取物
本研究的目的是研究纸草叶提取物。Steud交货。因为它们的植物化学物质和生物活性。采用圆盘扩散法对革兰氏阴性菌和阳性菌进行抑菌活性测定。定性估计了各种植物化学类的存在。采用分光光度法定量测定其总酚类、总黄酮及两种体外抗氧化活性(DPPH和FRAP)。植物化学分析表明,纸草DM、DE和DC提取物中均含有心糖苷、香豆素和类黄酮,而皂苷在纸草叶片提取物中均不存在。结果表明,只有乙酸乙酯提取物(DEE)对MTCC-1522在14mm范围内呈阳性。正己烷叶提取物中酚类含量最高(39.69±0.11 mg QE/g),甲醇叶提取物中黄酮类含量最高(131.8±0.15 mg QE/g)。清除自由基活性以IC50表示,甲醇提取物的清除活性最高(60.50±0.01µg/mL)。甲醇叶提取物的还原力最高(163.29±0.01 mg AA/g)。该研究表明,纸草属植物在制药和化妆品行业具有良好的应用前景。其中发现的植物化学物质也具有良好的功效。
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