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首页> 外文期刊>Industrial Crops and Products >Volatile components, pharmacological profile, and computational studies of essential oil from Aegle marmelos (Bael) leaves: A functional approach
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Volatile components, pharmacological profile, and computational studies of essential oil from Aegle marmelos (Bael) leaves: A functional approach

机译:来自Aegle Marmelos(Bael)的精油的挥发性组分,药理学概况和基本油的计算研究:功能方法

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The increasing therapeutic use of plant essential oil (EO) in aromatherapy has urged scientists to investigate into its biological potency. We report the phytochemical composition of the EO of Aegle marmelos (L.) Correa using GC-MS analysis, together with its pharmacological properties (antibacterial, antioxidant, and enzyme inhibitory properties). Molecular docking of the major identified compounds against tyrosinase and a-glucosidase was also performed. The EO displayed the highest total antioxidant potential in the phosphomolybdenum assay (24.70 mmol TE/g sample), but showed mild scavenging (DPPH = 0.03 mmol TE/g sample), and reducing effect (CUPRAC = 0.54 mmol TE/g sample, FRAP = 0.21 mmol TE/g sample). Moreover, the EO of A. marmelos showed the greatest inhibitory property against tyrosinase 53.68 (mg KAE/g sample) and good inhibitory effect on alpha-glucosidase (39.08 mmol ACAE/g sample) compared with alpha-amylase (0.19 mmol ACAE/g sample). In addition, the EO exhibited moderate AChE inhibition (2.75 mg GALAE/g sample) and BChE inhibition (4.93 mg GALAE/g sample). Disc diffusion assay revealed that S. aureus (Zone of inhibition (ZOI) = 21.4 mm) was most susceptible to the EO followed by C. diphtheriae (ZOI = 17.2 mm) while the lowest MIC value was observed against B. cereus and C. diphtheriae (MIC = 125 mu g/ml). The EO of A. marmelos was abundant in limonene (74.9%) followed by beta-phellandrene (4.4%), p-cyrnene (4.2%), and beta-caryophyllene (2.0%). Humulene and cryptone exhibited higher docking score after docking to tyrosinase while the best docking scores observed against alpha-glucosidase was found for humulene and carveol. The EO of A. marmelos showed promising inhibitory activities against vital enzymes related to diabetes, neurological, and skin disorders, and mild antioxidant ability, thus highlighting the quenching abilities of surplus reactive oxygen species related to these disorders. It is predicted that the results obtained will stimulate further research to probe into the therapeutic properties of A. marmelos.
机译:在芳香疗法中植物精油(EO)的植物精油(EO)的增加促使科学家调查其生物效力。我们使用GC-MS分析报告Aegle Marmelos(L.)Correa的EO的植物化合物组合物,以及其药理学性质(抗菌,抗氧化剂和酶抑制性能)。还进行了针对酪氨酸酶和A-葡糖苷酶的主要鉴定化合物的分子对接。 EO在磷钼测定中显示出最高的总抗氧化潜力(24.70mmol TE / G样品),但显示出轻度清除(DPPH = 0.03mmol TE / G样品),降低效果(Cuprac = 0.54mmol TE / G样品,FRAP = 0.21mmol te / g样本)。此外,A.Marmelos的EO展示了对酪氨酸酶53.68(Mg Kae / G样品)的最大抑制性质和对α-葡糖苷酶(39.08mmol ACAE / G样品)的良好抑制作用与α-淀粉酶(0.19mmol ace / g相比样本)。此外,EO表现出适度的疼痛抑制(2.75mg Galae / G样品)和BCHE抑制(4.93mg Galae / G样品)。盘扩散测定显示,S. aureus(抑制区(ZOI)= 21.4mm)最易于EO,然后是C. diphtheriae(Zoi = 17.2mm),而对B. Cereus和C观察到最低的MIC值。白喉(MIC =125μg/ ml)。 A. Marmelos的EO含有柠檬烯(74.9%),其次是β-磷锡(4.4%),对羟基烯(4.2%)和β-羧基(2.0%)。在对接到酪氨酸酶后,Humulene和Cryptone在对接到酪氨酸酶后呈现更高的对接得分,而针对Humulene和Carveol观察到抗α-葡糖苷酶的最佳对接得分。 A.Marmelos的EO表现出对与糖尿病,神经和皮肤病有关的重要酶,以及轻度抗氧化能力的重要抑制活动,从而突出了与这些疾病相关的剩余活性氧物质的猝灭能力。预测所获得的结果将刺激进一步研究探针进入A.Marmelos的治疗性质。

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