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首页> 外文期刊>Journal of High Resolution Chromatography >HRGC/FID and HRGC/MSD Analysis of the Secondary Metabolites Obtained by Different Extraction Methods from Lepechinia schiedeana, and in Vitro Evaluation of Its Antioxidant Activity
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HRGC/FID and HRGC/MSD Analysis of the Secondary Metabolites Obtained by Different Extraction Methods from Lepechinia schiedeana, and in Vitro Evaluation of Its Antioxidant Activity

机译:不同提取方法对鹅肝的次生代谢产物的HRGC / FID和HRGC / MSD分析及其抗氧化活性的体外评价

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Steam distillation (SD), simultaneous distillation-solvent extraction (SDE), microwave-assisted solvent extraction (MWE), and supercritical (CO_2) extraction (SFE) were used to isolate secondary metabolites from Lepechinia schiedeana. The various extracts were analyzed by capillary gas-chromatography, on poly(dimethylsiloxand) (DB-1) and poly(ethyleneglycol) (INNOWAX), 60 m columns, using FID or MSD (EI, 70 eV). Kovats indexes, mass spectra, or standard compounds were employed for compound identification. 43, 61, 67, and 79 compounds at concentrations above 0.01% were detected in the SD, SDE, MWE, and SFE extracts, respectively. Ledol, C_(15)H_(26)O, was the major constituent (20.04-36.87%) in all extracts. Oxygenated sesquiterpenes (24.36-43.14%), C_(10)H_(16), monoterpenes (27.70-39.87%), and C_(15)H_(24), sesquiterpenes (10.04-22.22%) were the main groups of compounds present in SD, SDE, MWE, and SFE extracts. Heavy hydrocarbons (C_n > 15), diterpenoids, and phytosterols were found only in MWE and SFE extracts. The antioxidant activity of Lepechinia schiedeana was measured by the HRGC quantification of the volatile carbonyl compounds, final products of lipoxidation, released in a model lipid system (sunflower oil) by the effect of the Fenton reagent. The concentration of volatile carbonyl compounds decreased by 65% when lipid oxidation was induced in the presence of macerated Lepechinia plant. The protection of polyunsaturated acids in sunflower oil was also studied by measuring their concentrations after heating of the oil (180 deg C, 2 h) with and without macerated Lepechinia plant.
机译:使用蒸汽蒸馏(SD),同时蒸馏-溶剂萃取(SDE),微波辅助溶剂萃取(MWE)和超临界(CO_2)萃取(SFE)分离了Schledeana的次生代谢产物。使用FID或MSD(EI,70 eV)在60 m聚二甲基硅氧烷(DB-1)和聚乙二醇(INNOWAX)上通过毛细管气相色谱分析各种提取物。使用科瓦兹指数,质谱或标准化合物进行化合物鉴定。在SD,SDE,MWE和SFE提取物中分别检测到浓度高于0.01%的43、61、67和79种化合物。 Ledol,C_(15)H_(26)O,是所有提取物中的主要成分(20.04-36.87%)。氧化的倍半萜(24.36-43.14%),C_(10)H_(16),单萜(27.70-39.87%)和C_(15)H_(24),倍半萜(10.04-22.22%)是存在的主要化合物在SD,SDE,MWE和SFE提取物中。仅在MWE和SFE提取物中发现了重烃(C_n> 15),二萜和植物甾醇。通过对芬顿试剂的影响,在模型脂质系统(葵花油)中释放的挥发性羰基化合物(脂氧化的最终产物)的HRGC定量测定了Schledeana schledeana的抗氧化活性。在浸软的Lepechinia植物的存在下诱导脂质氧化时,挥发性羰基化合物的浓度降低了65%。向日葵油中多不饱和酸的保护作用也通过在有或没有浸软的Lepechinia植物的情况下加热(180℃,2 h)后测量其浓度来研究。

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