首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Effect of Laurus nobilis L. Essential Oil and its Main Components on α-glucosidase and Reactive Oxygen Species Scavenging Activity
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Effect of Laurus nobilis L. Essential Oil and its Main Components on α-glucosidase and Reactive Oxygen Species Scavenging Activity

机译:月桂精油及其主要成分对α-葡萄糖苷酶和活性氧清除活性的影响

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摘要

The present study was designed to determine the effects of the essential oil of Laurus nobilis L. (Lauraceae) and its three main components on α-glucosidase and reactive oxygen species scavenging activity. The chemical composition of the essential oil from Laurus nobilis L. leaves was analyzed by GC/GC-MS and resulted in the identification of 29 compounds, representing 99.18% of the total oil. 1,8-cineole (68.82%), 1-(S)-α-pinene (6.94%), and R-(+)- limonene (3.04%) were determined to be the main components. The antioxidant features of the essential oil and its three main components were evaluated using inhibition of 2,2-diphenyl-1- picrylhydrazyl, hydroxyl, and superoxide radicals, inhibition of hydrogen peroxide and lipid peroxidation assays. The results show that the DPPH, hydroxyl, and superoxide radical as well as hydrogen peroxide scavenging activities of the essential oil are greater than the positive controls and the three main components of the oil when tested independently. The inhibition of lipid peroxidation by the oil occurred less frequently than with 1,8-cineole and R-(+)- limonene alone, but the effects were more pronounced than those seen with 1-(S)-α-pinene and the positive controls. An α-glucosidase inhibition assay was applied to evaluate the in-vitro antidiabetic activity of the essential oil. IC50-values were obtained for laurel essential oil, 1, 8-cineole, 1-(S)-α-pinene, and R-(+)-limonene: 1.748 μL/mL, 1.118 μL/mL, 1.420 μL/mL and 1.300 μL/mL, respectively. We also found that laurel essential oil and 1, 8-cineole inhibited the α-glucosidase competitively while 1-(S)-α-pinene and R-(+)-limonene were uncompetitive inhibitors.
机译:本研究旨在确定月桂属(Laurusae)的精油及其三个主要成分对α-葡萄糖苷酶和活性氧清除能力的影响。通过GC / GC-MS分析了月桂叶的精油的化学成分,鉴定出29种化合物,占总油量的99.18%。确定了1,8-桉树脑(68.82%),1-(S)-α-pine烯(6.94%)和R-(+)-mon烯(3.04%)是主要成分。使用抑制2,2-二苯基-1-苦基肼基,羟基和超氧自由基,抑制过氧化氢和脂质过氧化的方法评估了香精油及其三个主要成分的抗氧化特性。结果表明,精油的DPPH,羟基和超氧自由基以及过氧化氢清除活性均大于阳性对照和油的三个主要成分。与单独使用1,8-桉树脑和R-(+)-li烯相比,油对脂质过氧化的抑制作用更不频繁,但其效果比1-(S)-α-pine烯和阳性结果更明显。控件。应用α-葡萄糖苷酶抑制测定法评估香精油的体外抗糖尿病活性。月桂精油,1、8-桉树脑,1-(S)-α-pine烯和R-(+)-柠檬烯的IC50值分别为1.748μL/ mL,1.118μL/ mL,1.420μL/ mL和分别为1.300μL/ mL。我们还发现,月桂树精油和1、8-桉树脑具有竞争性地抑制α-葡萄糖苷酶的能力,而1-(S)-α-pine烯和R-(+)-柠檬烯是无竞争性的抑制剂。

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