首页> 外文期刊>Journal of Agricultural and Food Chemistry >Identification of metabolites of (1,2,3-(13)C)Propargyl alcohol in rat urine by (13)C NMR and mass spectrometry.
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Identification of metabolites of (1,2,3-(13)C)Propargyl alcohol in rat urine by (13)C NMR and mass spectrometry.

机译:通过(13)C NMR和质谱鉴定大鼠尿液中(1,2,3-(13)C)炔丙醇的代谢产物。

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Little is known about the metabolism of acetylenic (C&tbd1;C) compounds commonly used in the formulation of pesticides. To better understand the in vivo reactivity of this bond, we examined the metabolism of propargyl alcohol (PA), 2-propyn-1-ol, used extensively in the chemical industry. [1,2,3-(13)C, 2,3-(14)C]PA was administered orally to male Sprague-Dawley rats. Approximately 56% of the dose was excreted in urine by 96 h. Major metabolites were characterized, directly, in the whole urine by one- and two-dimensional (13)C NMR. To determine the complete structures of metabolites of PA, rat urine was also subjected to TLC followed by purification of separated TLC bands on HPLC. The purified metabolites were identified by (13)C NMR and mass spectrometry and by comparison with available synthetic standards. The proposed metabolic pathway involves oxidation of propargyl alcohol to 2-propynoic acid and further detoxification via glutathione conjugation to yield as final products: 3, 3-bis[(2-(acetylamino)-2-carboxyethyl)thio]-1-propanol, 3-(carboxymethylthio)-2-propenoic acid, 3-(methylsulfinyl)-2-(methylthio)-2-propenoic acid, 3-[[2-(acetylamino)-2-carboxyethyl]thio]-3-[(2-amino-2-carboxyethyl)t hio]-1-propanol and 3-[[2-(acetylamino)-2-carboxyethyl]sulfinyl]-3-[2-(acetylamino)-2-car boxyethyl]thio]-1-propanol. These unique metabolites have not been reported previously and represent the first example of multiple glutathione additions to the carbon-carbon triple bond.
机译:关于农药制剂中常用的炔属化合物(C&tbd1; C)的代谢知之甚少。为了更好地了解此键的体内反应性,我们研究了在化学工业中广泛使用的炔丙醇(PA)2-propyn-1-ol的代谢。将[1,2,3-(13)C,2,3-(14)C] PA口服给予雄性Sprague-Dawley大鼠。到96小时,大约56%的剂量被排泄到尿液中。主要代谢物直接在整个尿液中通过一维和二维(13)C NMR进行表征。为了确定PA代谢产物的完整结构,还对大鼠尿液进行了TLC,然后在HPLC上纯化了分离的TLC条带。通过(13)C NMR和质谱鉴定纯化的代谢物,并与可用的合成标准品进行比较。拟议的代谢途径包括将炔丙醇氧化为2-丙酸,并通过谷胱甘肽偶联进一步解毒,得到最终产物:3,3-双[((2-(乙酰氨基)-2-羧乙基)硫代] -1-丙醇, 3-(羧甲硫基)-2-丙酸,3-(甲亚磺酰基)-2-(甲硫基)-2-丙酸,3-[[[2-(乙酰氨基)-2-羧乙基]硫代] -3-[(2 -氨基-2-羧基乙基)叔基-1-丙醇和3-[[2-(乙酰氨基)-2-羧基乙基]亚磺酰基] -3- [2-(乙酰氨基)-2-羧基丁]硫基] -1 -丙醇。这些独特的代谢物以前未见报道,代表了向碳-碳三键添加多个谷胱甘肽的第一个例子。

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