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首页> 外文期刊>Food & Function >Optimization of ultrasound-assisted extraction of gardenia fruit oil with bioactive components and their identification and quantification by HPLC-DAD/ESI-MS2
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Optimization of ultrasound-assisted extraction of gardenia fruit oil with bioactive components and their identification and quantification by HPLC-DAD/ESI-MS2

机译:超声波辅助提取garden子果油中生物活性成分的优化及其HPLC-DAD / ESI-MS2的鉴定和定量

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摘要

Compounds in Fructus Gardeniae have been shown to possess a wide array of biological activities. However, Gardenia oil extracted from its fruit is less reported and its composition remains uncertain. To completely characterize lipophilic compounds in Gardenia oil, three conventional extraction (CE) and ultrasound-assisted extraction (UAE) methods were investigated. The oil extraction yield obtained by UAE was 51.8% higher than that acquired by cold-pressed extraction (CPE). The fatty acid profile in UAE oil with different solvents was characterized by GC-MS. Petroleum ether was observed to be an ideal solvent with 8.59% extraction yield and 78.88% recovery rate and with a ratio of 3.11 of unsaturated fatty acids to saturated fatty acids. Response surface methodology (RSM) with Box-Behnken Design (BBD) was applied to optimize conditions in UEA of oil to maximize extraction yield. Furthermore, the bioactive components in oil extracted by UAE were qualitatively identified and quantified by HPLC-DAD/ESI-MS2 and HPLC-DAD analysis. The eight compounds in Gardenia oil, including geniposide, trans/cis-crocin-1, crocin-2, crocin3, crocin-4, and trans/cis-crocetin, were structurally revealed. The corresponding transfer rates of the bioactive components showed that the lipophilic trans/cis-crocetin could be completely transferred from fruit to oil, with the highest concentration of 11.38 mu g g(-1) oil among all compounds quantified. These findings could deliver potential application to a large-scale production of functional Gardenia oil whose bioactive components possess health benefits.
机译:已显示Garden子中的化合物具有广泛的生物活性。但是,从其果实中提取的Garden子油的报道较少,其成分仍不确定。为了完全表征Garden子油中的亲脂性化合物,研究了三种常规提取(CE)和超声辅助提取(UAE)方法。阿联酋获得的石油提取得率比冷压提取(CPE)获得的高出51.8%。用GC-MS对不同溶剂在阿联酋油中的脂肪酸谱进行了表征。观察到石油醚是一种理想的溶剂,具有8.59%的萃取率和78.88%的回收率,并且不饱和脂肪酸与饱和脂肪酸之比为3.11。应用具有Box-Behnken设计(BBD)的响应面方法(RSM)来优化油UEA中的条件,以最大程度地提高提取率。此外,通过HPLC-DAD / ESI-MS2和HPLC-DAD分析定性鉴定和定量了阿联酋提取的油中的生物活性成分。从结构上揭示了Garden子油中的八种化合物,包括子苷,反式/顺式crocin-1,crocin-2,crocin3,crocin-4和反式/顺式crocetin。相应的生物活性成分的传输速率表明,亲脂性反式/顺式-crocetin可以从水果完全转移到油中,在所有定量化合物中,最高浓度为11.38μg g(-1)油。这些发现可为大规模生产功能性Garden子油提供潜在的应用,whose子油的生物活性成分具有健康益处。

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