从野生佛手柑(Monarda fistulosa L.)中获取胸腺醌和胸腺氢醌

I. Casian, Ana Casian
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引用次数: 0

摘要

背景:胸腺醌(TQ)和胸腺氢醌(THQ)是具有抗菌、抗霉菌、抗病毒、抗癌和抗氧化活性的天然物质。在此之前,已经开发出了获取 TQ 含量较高的野生佛手柑精油的方法。本研究的目的是从野生佛手柑中提取 TQ 和 THQ 的方法。材料和方法从 Nicolae Testemitanu 国立医药大学科学实践中心的种植园中采集了野生佛手柑的气生部分。精油的分离和分馏以及单个物质的提纯采用了水蒸馏法。研究的分析部分采用高效液相色谱法。研究结果通过用抗坏血酸、亚硫酸或野生佛手柑精油的天然成分直接还原精油中的 TQ,获得了晶体状的 THQ。随后用过氧化氢或亚硝酸氧化 THQ,即可得到 TQ。此外,通过优化植物材料发酵参数和使用两阶段水蒸馏法,并在第一阶段对形成的 THQ 进行中间氧化,也提高了 TQ 的产量。结论:通过几种技术程序,从野生佛手柑精油中获得了 THQ,产量从 68-74% 提高到 93-97%;从 THQ 中获得了 TQ,产量为 87-92%。对植物材料的加工程序也进行了优化,以获得 TQ 含量为 48-56% 且残留酚不超过 12% 的精油。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Obtaining thymoquinone and thymohydroquinone from Wild bergamot (Monarda fistulosa L.)
Background: Thymoquinone (TQ) and thymohydroquinone (THQ) are natural substances with antibacterial, antimycotic, antiviral, anticancer, antioxidant activity. Previously, was developed the method for obtaining Wild bergamot essential oil with high TQ content. The objective of this study was to create methods for obtaining individual substances TQ and THQ from Wild bergamot herb. Material and methods: Aerial parts of Wild bergamot have been collected from the plantation of the Scientific Practical Centre of Nicolae Testemitanu State University of Medicine and Pharmacy. The hydrodistillation method has been used for essential oil isolation and fractionation, and purification of individual substances. The analytical part of study has been performed by the HPLC method. Results: THQ was obtained in crystalline form by reducing TQ directly in the essential oil with ascorbic acid, sulphurous acid, or natural components of the Wild bergamot essential oil. Subsequent oxidation of THQ with hydrogen peroxide or nitrous acid gave TQ. Additionally, the yield of TQ was increased by optimising the parameters of plant material fermentation and using two-stage hydrodistillation with intermediate oxidation of the THQ formed at the first stage. Conclusions: Several technological procedures were created to obtain THQ from the Wild bergamot essential oil with a yield from 68-74% to 93-97% and TQ from THQ with a yield of 87-92%. The procedure of plant material processing has been optimised also to obtain essential oil with 48-56% TQ and not more than 12% residual phenols.
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