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Extraction of betel leaves (Piper betle L.) essential oil and its bio-actives identification: Process optimization, GC-MS analysis and anti-microbial activity

机译:叶片叶片(吹笛剂BETLE L.)精油及其生物活性物质鉴定:工艺优化,GC-MS分析和抗微生物活性

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Betel leaf (Piper belle L.) var. Bangla is an essential oil (EO) rich plant belongs to Piperaceace family used as traditional herbal medicine. The extraction of EO from fresh and cured betel leaves is of high interest for industrial application. Thus, the present study was aimed to optimize the EO extraction and its bio-chemical characterisation. Box-Behnken Design coupled with response surface methodology was employed to optimize the independent variables such as liquid to solid ratio (30:1-50:1 mL/g), extraction time (5-7 h), and particle size (0-20 mesh). Quadratic polynomial models were found to be highly significant (p 0.05) obtaining fresh and cured betel leaf EO with a yield of 0.18% +/- 0.01% and 0.22% +/- 0.02% at optimal condition: 40:1 mL/g, 6 h, and 10 mesh. Gas chromatography mass spectrometry (GC-MS) analysis revealed thirty-three and thirty volatile compounds, representing 98.41% and 97.34% of the optimized fresh and cured leaf EO, respectively which have a varied range of biological activities and industrial applications. Eugenol, estragole, linalool, a-copaene, anethole, chavicol, and caryophyllene were found to be highly abundant in both EO with different percentages. Antibacterial activity was evaluated against Mycobacterium smegmatis, Staphylococcus aureus and Pseudomonas aeruginosa and the results demonstrated that cured leaf EO showed significantly higher antimicrobial activity against M. smegmatis than fresh leaf EO. Moreover, morphological study was carried out to investigate the extraction mechanism of fresh and cured betel leaves with the help of scanning electron microscopy (SEM).
机译:槟榔叶(吹笛者Belle L.)var。 Bangla是一种精油(EO)富含植物属于磷酸盐的家族,用作传统草药。从新鲜和固化的槟榔叶中提取EO对工业应用具有高兴趣。因此,本研究旨在优化EO提取及其生物化学表征。采用响应面方法耦合的Box-Behnken设计用于优化液体的独立变量,例如液体与实心比(30:1-50:1mL / g),提取时间(5-7小时)和粒度(0- 20目)。发现二次多项式模型非常显着(P <0.05),获得新鲜和固化的槟榔叶EO,产率为0.18%+/- 0.01%和0.22%+/- 0.02%:40:1 ml / g,6 h和10目。气相色谱质谱(GC-MS)分析显示出三十三和三十挥发性化合物,分别具有优化的新鲜和固化叶EO的98.41%和97.34%,其具有各种各样的生物活性和工业应用。在eo eugenol,雌核,烯丙,α-丁醇,凝胶醇和亚芳酮中被发现在不同百分比的eo中非常丰富。针对三分枝杆菌,金黄色葡萄球菌和假单胞菌铜绿假单胞菌评估抗菌活性,结果表明,固化的叶EO与新鲜叶EO的M. Smogmatis呈显着更高的抗微生物活性。此外,对扫描电子显微镜(SEM)的帮助,进行了形态学研究以研究新鲜和固化槟榔叶的提取机制。

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