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Application of supercritical CO2 for extraction of polyisoprenoid alcohols and their esters from plant tissues

机译:超临界二氧化碳在植物组织中提取聚异戊二烯醇及其酯类的应用

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摘要

In this study, a method of supercritical fluid extraction (SFE) with carbon dioxide of polyisoprenoids from plant photosynthetic tissues is described. SFE was an effective extraction method for short- and medium-chain compounds with even higher yield than that observed for the “classical extraction” method with organic solvents. Moreover, SFE-derived extracts contained lower amounts of impurities (e.g., chlorophylls) than those obtained by extraction of the same tissue with organic solvents. Elevated temperature and extended extraction time of SFE resulted in a higher rate of extraction of long-chain polyisoprenoids. Ethanol cofeeding did not increase the extraction efficiency of polyisoprenoids; instead, it increased the content of impurities in the lipid extract. Optimization of SFE time and temperature gives the opportunity of prefractionation of complex polyisoprenoid mixtures accumulated in plant tissues. Extracts obtained with application of SFE are very stable and free from organic solvents and can further be used directly in experimental diet supplementation or as starting material for preparation of semisynthetic polyisoprenoid derivatives, e.g., polyisoprenoid phosphates.
机译:在这项研究中,描述了一种利用二氧化碳从植物光合组织中提取聚异戊二烯的超临界流体萃取(SFE)方法。 SFE是一种短链和中链化合物的有效萃取方法,其收率甚至高于使用有机溶剂进行“经典萃取”方法所观察到的产率。而且,与通过有机溶剂提取相同组织而获得的那些杂质相比,源自SFE的提取物包含较少量的杂质(例如叶绿素)。 SFE的温度升高和萃取时间延长,导致长链聚异戊二烯的萃取率更高。乙醇共进料并没有提高聚异戊二烯的提取效率。相反,它增加了脂质提取物中杂质的含量。 SFE时间和温度的优化为植物组织中积累的复杂聚异戊二烯混合物的预分馏提供了机会。使用SFE所获得的提取物非常稳定且不含有机溶剂,可进一步直接用于实验饮食补充中,或用作制备半合成聚异戊二烯衍生物(例如聚异戊二烯磷酸盐)的原料。

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