Headspace gas chromatographic determination of β-caryophyllene in Epilobium angustifolium L. extracts

IF 0.5 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY
V. Vickackaite, Marija Lukoševičiūtė, Vilius Poškus
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引用次数: 0

Abstract

Epilobium angustifolium L. is a plant widely used in folk medicine. It is rich in biologically active compounds including phenols, flavonoids, terpenes, aliphatic acids and sterols; however, until now, little attention has been paid to its volatile components. This research demonstrated that Epilobium angustifolium L. is rich in β-caryophyllene that is possibly responsible for its unique therapeutic properties. The leaves of Epilobium angustifolium L. are traditionally used as a tea. On the other hand, β-caryophyllene is soluble in oils, thus an extract of Epilobium angustifolium L. in edible oils should also demonstrate a healing effect. Therefore, quick and reliable methods of β-caryophyllene determination in edible oils and in water solutions are required. In this work, headspace gas chromatography is suggested to determine β-caryophyllene. At the optimized chromatographic conditions for β-caryophyllene solutions in coconut oil the calibration curve was linear up to 10 mg g–1, the detection limit was 60 µg kg–1, for β-caryophyllene solutions in water the calibration curve was linear up to 40 µg l–1, and the detection limit was 6 µg l–1. The methods were applied for the β-caryophyllene determination in the extract of Epilobium angustifolium L. in sunflower oil and in Epilobium angustifolium L. tea.
顶空气相色谱法测定枇杷叶提取物中β-石竹烯的含量
八角是一种广泛应用于民间医药的植物。富含酚类、黄酮类、萜烯类、脂肪酸和甾醇等生物活性化合物;然而,到目前为止,人们很少关注其挥发性成分。这项研究表明,香叶富含β-石竹烯,这可能是其独特治疗特性的原因。香蒲的叶子传统上被用作茶。另一方面,β-石竹烯可溶于油中,因此食用油中的香叶提取物也应具有治疗作用。因此,需要快速可靠的方法测定食用油和水溶液中的β-石竹烯。本文建议采用顶空气相色谱法测定β-石竹烯。在椰子油中β-石竹烯溶液的优化色谱条件下,校准曲线线性高达10 mg g–1,检测限为60µg kg–1,水中β-石竹烯溶液线性高达40µg l–1,检出限为6µg l-1。应用该方法测定了向日葵油中苦叶提取物和苦叶茶中β-石竹烯的含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemija
Chemija 化学-化学综合
CiteScore
1.30
自引率
16.70%
发文量
14
审稿时长
>12 weeks
期刊介绍: Chemija publishes original research articles and reviews from all branches of modern chemistry, including physical, inorganic, analytical, organic, polymer chemistry, electrochemistry, and multidisciplinary approaches.
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