首页> 美国卫生研究院文献>Nutrients >Identification of N-Acetyl-S-(3-Cyano-2-(Methylsulfanyl)Propyl-Cysteine as a Major Human Urine Metabolite from the Epithionitrile 1-Cyano-23-Epithiopropane the Main Glucosinolate Hydrolysis Product from Cabbage
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Identification of N-Acetyl-S-(3-Cyano-2-(Methylsulfanyl)Propyl-Cysteine as a Major Human Urine Metabolite from the Epithionitrile 1-Cyano-23-Epithiopropane the Main Glucosinolate Hydrolysis Product from Cabbage

机译:N-乙酰基-S-(3-氰基-2-(甲基硫烷基)丙基半胱氨酸的鉴定是一种主要的人类尿液代谢产物来自上表腈1-Cyano-23-Epithiopropane这是白菜中主要的芥子油苷水解产物。

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摘要

Brassica vegetables such as cabbage or pak choi contain alkenyl glucosinolates which can release epithionitriles and to a lesser degree isothiocyanates upon enzymatic hydrolysis. Here, for the first time, the metabolism of an epithionitrile was investigated in humans, namely 1-cyano-2,3-epithiopropane (CETP). After consumption of Brassica oleracea var. capitata f. alba and Brassica carinata sprouts, the main urinary metabolite of CETP was identified as N-acetyl-S-(3-cyano-2-(methylsulfanyl)propyl-cysteine using an UHPLC-ESI-QToF-MS approach and synthesis of the metabolite. This urinary epithionitrile metabolite is an S-methylated mercapturic acid. No other metabolites were detected. Then, in a preliminary pilot experiment the excretion kinetics of CETP were investigated in three volunteers. After consumption of a B. carinata sprout preparation containing 50.8 µmol of CETP, urinary N-acetyl-S-(3-cyano-2-(methylsulfanyl)propyl-cysteine concentrations were the highest three hours after consumption, ranging from 23.9 to 37.2 µM, and declined thereafter. Thus, epithionitriles are bioavailable compounds that are metabolized similarly to isothiocyanates by the mercapturic acid pathway. In the future, more epithionitrile metabolites should be identified and the pharmacokinetics of these important class of dietary compounds should be assessed in more detail.
机译:甘蓝蔬菜如卷心菜或小白菜含有烯基芥子油苷,其可在酶促水解后释放表硫腈和程度较小的异硫氰酸酯。在这里,首次在人中研究了表硫腈的代谢,即1-氰基-2,3-表硫丙烷(CETP)。食用甘蓝变种后。卡皮塔塔山通过UHPLC-ESI-QToF-MS方法和代谢物的合成,鉴定出CETP的主要尿代谢产物为N-乙酰基-S-(3-氰基-2-(甲基硫烷基)丙基-半胱氨酸。该尿中的硫代腈代谢物是S-甲基化的巯基乙酸,未检测到其他代谢物,然后在初步的中试实验中,对三名志愿者的CETP排泄动力学进行了研究。 ,尿中N-乙酰基-S-(3-氰基-2-(甲基硫烷基)丙基-半胱氨酸的浓度在食用后3小时内最高,从23.9至37.2 µM,然后下降。类似于巯基乙酸途径的异硫氰酸酯。将来,应鉴定更多的表硫腈代谢物,并应更详细地评估这些重要饮食化合物的药代动力学。 ail

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