Matsutomo Toshiaki, Kodera Yukihiro
Drug Discovery Laboratory, Wakunaga Pharmaceutical Co., Ltd., Akitakata, Japan.
Drug Discovery Laboratory, Wakunaga Pharmaceutical Co., Ltd., Akitakata, Japan
J Nutr. 2016 Feb;146(2):450S-455S. doi: 10.3945/jn.114.208520. Epub 2016 Jan 13.
Garlic and its processed preparations contain numerous sulfur compounds that are difficult to analyze in a single run using HPLC.
The aim of this study was to develop a rapid and convenient sulfur-specific HPLC method to analyze sulfur compounds in aged garlic extract (AGE).
We modified a conventional postcolumn HPLC method by employing a hexaiodoplatinate reagent. Identification and structural analysis of sulfur compounds were conducted by LC-mass spectrometry (LC-MS) and nuclear magnetic resonance. The production mechanisms of cis-S-1-propenylcysteine (cis-S1PC) and S-allylmercaptocysteine (SAMC) were examined by model reactions.
Our method has the following advantages: less interference from nonsulfur compounds, high sensitivity, good correlation coefficients (r > 0.98), and high resolution that can separate >20 sulfur compounds, including several isomers, in garlic preparations in a single run. This method was adapted for LC-MS analysis. We identified cis-S1PC and γ-glutamyl-S-allyl-mercaptocysteine in AGE. The results of model reactions suggest that cis-S1PC is produced from trans-S1PC through an isomerization reaction and that SAMC is produced by a reaction involving S-allylcysteine/S1PC and diallyldisulfide during the aging period.
We developed a rapid postcolumn HPLC method for both qualitative and quantitative analyses of sulfur compounds, and this method helped elucidate a potential mechanism of cis-S1PC and SAMC action in AGE.
大蒜及其加工制品含有多种硫化合物,使用高效液相色谱法(HPLC)难以在一次运行中对其进行分析。
本研究旨在开发一种快速便捷的硫特异性HPLC方法,用于分析陈年大蒜提取物(AGE)中的硫化合物。
我们采用六碘铂酸盐试剂对传统的柱后HPLC方法进行了改进。通过液相色谱 - 质谱联用(LC - MS)和核磁共振对硫化合物进行鉴定和结构分析。通过模型反应研究顺式 - S - 1 - 丙烯基半胱氨酸(cis - S1PC)和S - 烯丙基巯基半胱氨酸(SAMC)的生成机制。
我们的方法具有以下优点:非硫化合物干扰少、灵敏度高、相关系数良好(r > 0.98),且分辨率高,能够在一次运行中分离大蒜制品中20多种硫化合物,包括几种异构体。该方法适用于LC - MS分析。我们在AGE中鉴定出了cis - S1PC和γ - 谷氨酰 - S - 烯丙基 - 巯基半胱氨酸。模型反应结果表明,cis - S1PC是由反式 - S1PC通过异构化反应生成的,而SAMC是在老化过程中由涉及S - 烯丙基半胱氨酸/S1PC和二烯丙基二硫化物的反应生成的。
我们开发了一种快速的柱后HPLC方法用于硫化合物的定性和定量分析,该方法有助于阐明AGE中cis - S1PC和SAMC作用的潜在机制。