Omar Jone, Olivares Maitane, Alonso Ibone, Vallejo Asier, Aizpurua-Olaizola Oier, Etxebarria Nestor
Dept. of Analytical Chemistry, Faculty of Science and Technology, Univ. of the Basque Country (UPV-EHU), P.O. Box 644, Bilbao, 48080, Basque Country, Spain.
IDOKI SFC, Technologic Park of Biscay, Ibaizabal Bidea. Building 502,4816, Derio, Basque Country, Spain.
J Food Sci. 2016 Apr;81(4):C867-73. doi: 10.1111/1750-3841.13257. Epub 2016 Feb 29.
Seven monoterpenes in 4 aromatic plants (sage, cardamom, lavender, and rosemary) were quantified in liquid extracts and directly in solid samples by means of dynamic headspace-gas chromatography-mass spectrometry (DHS-GC-MS) and multiple headspace extraction-gas chromatography-mass spectrometry (MHSE), respectively. The monoterpenes were 1st extracted by means of supercritical fluid extraction (SFE) and analyzed by an optimized DHS-GC-MS. The optimization of the dynamic extraction step and the desorption/cryo-focusing step were tackled independently by experimental design assays. The best working conditions were set at 30 °C for the incubation temperature, 5 min of incubation time, and 40 mL of purge volume for the dynamic extraction step of these bioactive molecules. The conditions of the desorption/cryo-trapping step from the Tenax TA trap were set at follows: the temperature was increased from 30 to 300 °C at 150 °C/min, although the cryo-trapping was maintained at -70 °C. In order to estimate the efficiency of the SFE process, the analysis of monoterpenes in the 4 aromatic plants was directly carried out by means of MHSE because it did not require any sample preparation. Good linearity (r2) > 0.99) and reproducibility (relative standard deviation % <12) was obtained for solid and liquid quantification approaches, in the ranges of 0.5 to 200 ng and 10 to 500 ng/mL, respectively. The developed methods were applied to analyze the concentration of 7 monoterpenes in aromatic plants obtaining concentrations in the range of 2 to 6000 ng/g and 0.25 to 110 μg/mg, respectively.
通过动态顶空-气相色谱-质谱联用仪(DHS-GC-MS)和多次顶空萃取-气相色谱-质谱联用仪(MHSE),分别对4种芳香植物(鼠尾草、小豆蔻、薰衣草和迷迭香)中的7种单萜类化合物在液体提取物中以及直接在固体样品中进行了定量分析。这些单萜类化合物首先通过超临界流体萃取(SFE)进行提取,然后采用优化后的DHS-GC-MS进行分析。动态萃取步骤和解吸/低温聚焦步骤的优化分别通过实验设计分析来解决。这些生物活性分子动态萃取步骤的最佳工作条件设定为:孵育温度30℃、孵育时间5分钟、吹扫体积40mL。从Tenax TA捕集阱中解吸/低温捕集步骤的条件设定如下:温度以150℃/分钟的速率从30℃升至300℃,同时低温捕集保持在-70℃。为了评估SFE过程的效率,通过MHSE直接对4种芳香植物中的单萜类化合物进行分析,因为它不需要任何样品制备。对于固体和液体定量方法,在0.5至200 ng和10至500 ng/mL的范围内,分别获得了良好的线性(r2>0.99)和重现性(相对标准偏差%<12)。所开发的方法用于分析芳香植物中7种单萜类化合物的浓度,其浓度范围分别为2至6000 ng/g和0.25至110μg/mg。