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首页> 外文期刊>Journal of separation science. >Characterization and complete separation of major cyclolinopeptides in flaxseed oil by reversed-phase chromatography
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Characterization and complete separation of major cyclolinopeptides in flaxseed oil by reversed-phase chromatography

机译:反相色谱法表征和完全分离亚麻籽油中的主要环亚麻肽

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摘要

Organoleptic properties of flaxseed oil deteriorate during storage due to methionine oxidation in its major cyclolinopeptides. Cyclolinopeptide E was previously identified as being responsible for the manifestation of bitter taste with flaxseed oil ageing. We developed a chromatographic procedure to monitor the oxidation of major cyclic peptides in flaxseed oil. We also used liquid chromatography with mass spectrometry and high-efficiency core-shell reversed-phase sorbents to study the separation of cyclolinopeptides in detail. The Kinetex~(TM) family of stationary phases (C_8, C_18, phenyl-hexyl) was tested, along with the standard porous Luna~(TM) C_(18)(2) media. We found that only the phenyl-hexyl stationary phase allows for complete resolution of major cyclolinopeptides, thus permitting direct UV monitoring of degree of conversion for cyclolinopeptide B into C and L into E. We also report, for the first time, a significant effect of peak splitting for some methionine S-oxide (Mso) containing cyclolinopeptides, which most likely appear due to diastereomerization. This results in poor separation efficiency for cyclolinopeptides F, G, and E, and gives baseline resolution of diastereomeric pairs for cyclolinopeptides I and P. Thus, a single oxidation of cyclolinopeptide N yields three distinct chromatographic peaks corresponding to cyclolinopeptide T (cyclo-MsoLMPFFWV, reported for the first time) and pair of cyclolinopeptide I (cyclo-MLMsoPFFWV) diastereomers.
机译:亚麻籽油的感官特性在储存期间由于其主要的环亚麻肽中的蛋氨酸氧化而变差。先前已鉴定出环亚麻肽E是亚麻籽油老化导致苦味表现的原因。我们开发了一种色谱程序,以监控亚麻籽油中主要环肽的氧化。我们还使用了液相色谱-质谱联用技术和高效的核-壳反相吸附剂来详细研究环亚麻肽的分离。测试了KinetexTM系列固定相(C_8,C_18,苯基己基)以及标准的多孔LunaTM C_(18)(2)介质。我们发现只有苯基-己基固定相可以完全拆分主要的环亚麻肽,因此可以直接通过UV监测环亚麻肽B转化为C和L转化为E的程度。某些含有环亚麻肽的蛋氨酸S-氧化物(Mso)的峰分裂,这很可能是由于非对映异构作用引起的。这会导致环亚麻肽F,G和E的分离效率差,并给出了环亚麻肽I和P的非对映异构对的基线分辨率。因此,环氧化肽N的单次氧化会产生三个不同的色谱峰,分别​​对应于环亚麻肽T(cyclo-MsoLMPFFWV,首次报道)和一对环亚麻肽I(cyclo-MLMsoPFFWV)非对映异构体。

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