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通过气相色谱/质谱分析单二甲二硫醚衍生物阐明多不饱和烯烃的双键位置。

Elucidation of double-bond positions of polyunsaturated alkenes through gas chromatography/mass spectrometry analysis of mono-dimethyl disulfide derivatives.

机构信息

Department of Chemistry, Brown University, Providence, RI, USA.

Institute at Brown for Environment and Society, Brown University, Providence, RI, USA.

出版信息

Rapid Commun Mass Spectrom. 2022 Feb 15;36(3):e9228. doi: 10.1002/rcm.9228.

DOI:10.1002/rcm.9228
PMID:34845773
Abstract

RATIONALE

Derivatization with dimethyl disulfide (DMDS) followed by gas chromatography/mass spectrometry (GC/MS) analysis is a well-established method for locating double-bond position on the alkyl chain of mono-unsaturated compounds such as alkenes. For alkenes containing more than one double bond, however, the conventional DMDS derivatization approach forms poly- or cyclized DMDS adducts whose mass spectra are difficult to interpret in terms of double-bond positions. In this study, we report an efficient experimental procedure to produce mono-DMDS adducts for polyunsaturated alkenes with two to six double bonds. GC/MS analyses of these mono-DMDS adducts yield highly characteristic mass fragments, allowing unambiguous assignments of double-bond positions on the alkyl chain. We also apply our new approach (i.e., preferential formation of mono-DMDS adducts during derivatization with DMDS) to determine the double-bond positions of unsaturated alkenes produced by laboratory cultured Isochrysis litoralis, a haptophyte algal species.

METHODS

Alkenes from different sources were derivatized with DMDS at 25°C for 20 to 160 min. The mass spectra of mono-DMDS adducts were obtained by GC/EI-MS analysis of reaction products which contain chromatographically resolved mono-DMDS adducts.

RESULTS

Mass spectra of corresponding mono-DMDS adducts contain prominent diagnostic ions that allow a conclusive elucidation of double-bond positions. In culture samples of Isochrysis litoralis, a series of novel mono- to tri-unsaturated C alkenes (9-C , 6,9-C , 6,22-C , 6,25-C , 9,22-C , 6,9,25-C ) were discovered for the first time.

CONCLUSIONS

A highly efficient DMDS derivatization approach is developed to yield abundant mono-DMDS adducts of polyunsaturated alkyl alkenes for elucidating double-bond positions using GC/MS.

摘要

原理

用二甲基二硫(DMDS)衍生化,然后进行气相色谱/质谱(GC/MS)分析,是一种确定单不饱和化合物(如烯烃)烷基链上双键位置的成熟方法。然而,对于含有多个双键的烯烃,常规的 DMDS 衍生化方法会形成多或环化的 DMDS 加合物,其质谱很难根据双键位置进行解释。在这项研究中,我们报告了一种有效实验程序,用于制备具有两个到六个双键的多不饱和烯烃的单-DMDS 加合物。对这些单-DMDS 加合物的 GC/MS 分析产生了高度特征的质量碎片,允许对烷基链上的双键位置进行明确的分配。我们还将我们的新方法(即在 DMDS 衍生化过程中优先形成单-DMDS 加合物)应用于确定通过实验室培养的藻类伊藻属(一种甲藻)产生的不饱和烯烃的双键位置。

方法

不同来源的烯烃在 25°C 下用 DMDS 衍生化 20 到 160 分钟。通过 GC/EI-MS 分析反应产物获得单-DMDS 加合物的质谱,反应产物中包含色谱分离的单-DMDS 加合物。

结果

相应的单-DMDS 加合物的质谱包含明显的诊断离子,允许对双键位置进行明确的阐明。在伊藻属的培养样本中,首次发现了一系列新型的单至三不饱和 C 烯烃(9-C 、6,9-C 、6,22-C 、6,25-C 、9,22-C 、6,9,25-C )。

结论

开发了一种高效的 DMDS 衍生化方法,用于产生丰富的多不饱和烷基烯烃的单-DMDS 加合物,以便使用 GC/MS 阐明双键位置。

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引用本文的文献

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