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Characterization and Bioactivity of Essential Oils from Geijera parviflora (Rutaceae): A Native Bush Medicine from Australia

机译:Geijera parviflora(芸苔科)的精油的表征和生物活性:来自澳大利亚的原生布什医学

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Essential oil was hydrodistilled from the Australian Wilga, botanically named G. parviflora Lindl., (Rutaceae). Fresh and aged essential oils were characterized using GC-MS, quantified using GC-FID and screened for bacterial inhibition qualitatively using disc diffusion and quantitatively using micro-titer plate broth dilution. To identify components responsible for bacterial inhibition, TLC-bioautography was used. Free radical scavenging capacity was determined using diphenylpicrylhydrazyl in methanol, and solvent extracts of the leaves using light petroleum, acetone and water were screened for qualitative pharmacological properties, as well as extracts produced by smoking the leaves and channeling into a condenser. Results showed that all essential oils extracted here conform broadly in composition to a previous identified chemotype with a-pinene, camphene and sabinene as the main constituents. As the essential oils age, polymerization of peroxide intermediates produced epoxycaryophyllene in at least one of our samples. The fresh oil showed only a modest level of antibacterial activity, but this became pronounced as the oil aged in storage, which resulted from a chemical change in the oil during years of storage at 4°C. Bioautography revealed that the antimicrobial capacity of the fresh oil may be attributed to its less abundant constituents, mainly a-terpineol, terpinen-4-ol, spathulenol, 1,8-cineole and camphor. The solvent extracts of the leaves revealed the presence of saponins, triterpenoids and alkaloids. The last two of these were also present in the smoke extract.
机译:精油从澳大利亚的Wilga(植物学名叫G. parviflora Lindl。)(芸香科)中经水蒸馏得到。使用GC-MS对新鲜和陈年的精油进行表征,使用GC-FID进行定量,并使用圆盘扩散法定性筛选细菌抑制作用,并使用微量滴定板肉汤稀释法进行定量分析。为了鉴定引起细菌抑制的成分,使用了TLC-生物自显影。使用二苯基吡啶甲基肼在甲醇中的自由基清除能力,并使用轻质石油,丙酮和水筛选叶子的溶剂提取物的定性药理特性,以及通过抽烟并通入冷凝器而产生的提取物。结果表明,此处提取的所有精油在成分上均与先前确定的化学型相符,其中以α-pine烯、,烯和sa烯为主要成分。随着精油的老化,过氧化物中间体的聚合至少在我们的一个样品中产生了环氧石竹烯。新鲜的油仅显示出适度的抗菌活性,但是随着油在储存中的老化而变得显着,这是由于在4°C的储存期间油中的化学变化所致。生物医学自显影发现,新鲜油的抗微生物能力可能归因于其较少的成分,主要是α-萜品醇,萜品烯-4-醇,七叶烯醇,1,8-桉树脑和樟脑。叶子的溶剂提取物显示出皂苷,三萜和生物碱的存在。其中的最后两个也存在于烟雾提取物中。

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