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首页> 外文期刊>Industrial Crops and Products >Valorizing industrial hemp (Cannabis sativa L.) by-products: Cannabidiol enrichment in the inflorescence essential oil optimizing sample pre-treatment prior to distillation
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Valorizing industrial hemp (Cannabis sativa L.) by-products: Cannabidiol enrichment in the inflorescence essential oil optimizing sample pre-treatment prior to distillation

机译:Valorizing Industrial Hemp(Cannabis Sativa L.)副产品:在蒸馏前的花序精油优化样品预处理的大麻富集

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摘要

Byproducts of industrial hemp (Cannabis sativa L), including inflorescences, represent an exploitable material to produce niche products for the pharmaceutical, nutraceutical, cosmetic and pesticide industry. One of them is the essential oil, whose composition can be properly modulated on an industrial level by optimizing the extractive conditions and sample pretreatment. This allows to achieve high concentrations of bioactive compounds, such as cannabidiol (CBD) and sesquiterpenes [e.g. (E)-caryophyllene]. In the present work, we evaluated the effects of type of distillation apparatus, status of conservation of the plant material, grinding and sample-pretreatment with microwave and heat, on the hemp essential oil chemical profile obtained from the monoecious cultivar Felina 32. Seven marker compounds, including the monoterpenes alpha-pinene, myrcene and terpinolene, the sesquiterpenes (E)-caryophyllene, alpha-humulene and caryophyllene oxide, and the cannabinoid CBD were quantified in the different hemp essential oil samples by gas chromatography-flame ionization detection (GC-FID) analysis, whereas the overall chemical profiles were achieved by gas chromatography-mass spectrometry (GC MS) analysis. Results showed that hydrodistillation (HD) in comparison with steam distillation (SD) gave a higher content of cannabinoids. Drying was fundamental to induce decarboxylation of cannabinoid acids to the relative alcoholic forms, coupled with an increase of the sesquiterpene fraction. The optimization of sample pretreatments pointed out that the exposure of dry inflorescences to microwave heating at 900 W power for 1 min was the best method to increase the abundance of bioactive compounds in the essential oil, with special reference to CBD, (E)-caryophyllene and caryophyllene oxide. Overall, these results give new insights into the exploitation of hemp byproducts in different fields such as pharmaceuticals, nutraceuticals and eco-friendly insecticides.
机译:工业大麻(Cannabis Sativa L)(包括花序)的副产品代表了生产用于制药,营养保健品,化妆品和农药行业的利基产品的可利用材料。其中一个是精油,通过优化萃取条件和样品预处理,可以在工业水平上适当调节其组合物。这允许实现高浓度的生物活性化合物,例如Cannabidiol(CBD)和Sesquiterpenes [例如(e)-Caryophyllene]。在目前的工作中,我们评估了蒸馏装置类型,植物材料的养护状况,微波和热量的养护状态的影响,在从单一的品种Felina 32获得的大麻精油化学型材上。七个标记化合物,包括单色素α-叉烯,牛键和萜烯醇,酪酮(E) - 甲基丙烯,α-冲链和亚芳酮氧化物,并通过气相色谱 - 火焰电离检测量化在不同大麻精油样品中(GC -FID)分析,而通过气相色谱 - 质谱(GC MS)分析来实现整体化学型材。结果表明,与蒸汽蒸馏(SD)相比的氢化物(HD)含量较高的大麻素。干燥是基本的,以诱导大麻素酸与相对醇形式的脱羧,加上倍半萜段的增加。样品预处理的优化指出,干燥花序在900W功率下将干燥花序暴露于微波加热1分钟是增加精油中生物活性化合物的丰度的最佳方法,特别参考CBD,(E) - 丙芳基甲烯和亚氰基氧化物。总的来说,这些结果为不同领域的大麻副产品开采提供了新的见解,例如药品,营养保健品和环保杀虫剂。

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