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首页> 外文期刊>Journal of the American Oil Chemists' Society >Analysis of Sesamin, Asarinin, and Sesamolin by HPLC with Photodiode and Fluorescent Detection and by GC/MS: Application to Sesame Oil and Serum Samples
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Analysis of Sesamin, Asarinin, and Sesamolin by HPLC with Photodiode and Fluorescent Detection and by GC/MS: Application to Sesame Oil and Serum Samples

机译:HPLC-光电二极管和荧光检测-GC / MS分析芝麻素,细辛和芝麻素:在芝麻油和血清样品中的应用

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摘要

New sensitive and specific analytical methods are needed for the analysis of sesamin, asarinin, and sesamolin in sesame seed oils, sesame dietary supplements, as well as in serum samples from clinical studies involving sesamin, asarinin, and sesamolin. The objective of this study was to develop a high performance liquid chromatographic (HPLC) method with photodiode array and fluorescent detectors and a gas chromatography mass-spectrometry (GC/MS) method for the analysis of sesamin, asarinin (episesamin), and sesamolin in sesame oil and in serum samples. Sesame oil samples were extracted with methanol whereas the serum samples were extracted with ethyl acetate or n-hexane. The individual lignans were analyzed by HPLC using reversed phase C18 columns. Analytical recoveries of sesamin, asarinin, and sesamolin from sesame oil were 92–94 % with two extractions. Recoveries from serum ranged from 87 to 97 %. The limit of quantitation with the fluorometric detector was 0.1 ng compared to 0.1 μg with the PDA detector. The concentrations of sesamin, asarinin, and sesamolin in Orchids and Sigma sesame oil were 0.4, 0, and 0.15 % and 0.19, 0.09, and 0 %, respectively. The identities of the individual lignans obtained by HPLC were confirmed by GC/MS and the concentrations of sesamin, asarinin, and sesamolin obtained with the fluorometric detector correlated with those obtained by GC/MS (r 2 = 0.94, P 0.001). The HPLC and GC/MS methods permit simple and efficient procedures for the analysis of sesamin, asarinin, and sesamolin in sesame oil samples as well as in serum samples.
机译:需要新的灵敏,特异的分析方法来分析芝麻油,芝麻膳食补充剂以及涉及芝麻素,朝香苷和芝麻素的临床研究中的血清样品中的芝麻素,asarin和芝麻素。这项研究的目的是开发一种具有光电二极管阵列和荧光检测器的高效液相色谱(HPLC)方法以及气相色谱质谱(GC / MS)方法,用于分析芝麻中的芝麻素,细辛素(episesamin)和芝麻素。芝麻油和血清样品中。麻油样品用甲醇萃取,而血清样品用乙酸乙酯或正己烷萃取。使用反相C18柱,通过HPLC分析各个木脂素。两次萃取从芝麻油中分离得到的芝麻素,天麻素和芝麻素的分析回收率为92–94%。血清回收率在87%到97%之间。荧光检测器的定量限为0.1 ng,而PDA检测器的定量限为0.1μg。兰花和西格玛芝麻油中芝麻素,asarinin和芝麻素的浓度分别为0.4%,0%和0.15%,0.19%,0.09和0%。通过GC / MS确认通过HPLC获得的单个木脂素的身份,通过荧光检测器获得的芝麻素,细辛和芝麻素的浓度与通过GC / MS获得的相关(r 2 = 0.94,P < 0.001)。 HPLC和GC / MS方法允许简单而有效的程序来分析芝麻油样品和血清样品中的芝麻素,细辛素和芝麻素。

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