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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A method for simultaneous analysis of phytosterols and phytosterol esters in tobacco leaves using non aqueous reversed phase chromatography and atmospheric pressure chemical ionization mass spectrometry detector
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A method for simultaneous analysis of phytosterols and phytosterol esters in tobacco leaves using non aqueous reversed phase chromatography and atmospheric pressure chemical ionization mass spectrometry detector

机译:非水相反相色谱-常压化学电离质谱检测器同时分析烟叶中植物甾醇和植物甾醇酯的方法

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摘要

While numerous analytical methods for phytosterols have been reported, the similar polarity and large molecules of phytosterol esters have made the methods lengthy and complicated. For this reason, an analytical method that could completely separate phytosterol esters including the higher fatty acids such as palmitic acid, stearic acid, oleic acid, linoleic acid and linolenic acid in addition to phytosterols without preliminary separation was developed. The separation was accomplished by non-aqueous reversed phase chromatography technique using only acetone and acetonitrile. An atmospheric pressure chemical ionization/mass spectrometry detector configured at selected ion monitoring mode was hyphenated with the separation system to detect phytosterols and phytosterol esters. Twenty-four types of these were consequently separated and then identified with their authentic components. The calibration curve was drawn in the range of about 5 to 25,000 ng/mL with a regression coefficient over 0.999. The limit of detection and limit of quantification, respectively, ranged from 0.9 to 3.0 ng/mL and from 3.0 to 11.0 ng/mL. Recovery rates ranged from 80 to 120%. The quantification results were subjected to statistical analysis and hierarchical clustering analysis, and were used to determine the differences in the amounts of phytosterols and phytosterol esters across tobacco leaves. The newly developed method succeeded in clarifying the whole composition of phytosterols and phytosterol esters in tobacco leaves and in explaining compositional differences across the variety of tobacco leaves.
机译:尽管已报道了许多植物甾醇分析方法,但极性相似且植物甾醇酯分子较大,使得该方法冗长而复杂。因此,开发了一种无需预先分离就可以完全分离除植物甾醇以外的包括高级脂肪酸如棕榈酸,硬脂酸,油酸,亚油酸和亚麻酸的植物甾醇酯的分析方法。通过仅使用丙酮和乙腈的非水反相色谱技术完成分离。将在选定离子监测模式下配置的大气压化学电离/质谱检测器与分离系统连接,以检测植物甾醇和植物甾醇酯。因此,将其中的24种类型进行了分离,然后通过其真实成分进行了识别。在约5至25,000 ng / mL的范围内绘制校准曲线,回归系数超过0.999。检测限和定量限分别为0.9至3.0 ng / mL和3.0至11.0 ng / mL。回收率从80%到120%不等。对定量结果进行统计分析和层次聚类分析,并用于确定整个烟叶中植物甾醇和植物甾醇酯含量的差异。新开发的方法成功地阐明了烟叶中植物甾醇和植物甾醇酯的整体组成,并解释了各种烟叶的组成差异。

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