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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >N-15-labelled nitrite/nitrate tracer analysis by LC-MS/MS: Urinary and fecal excretion of nitrite/nitrate following oral administration to mice
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N-15-labelled nitrite/nitrate tracer analysis by LC-MS/MS: Urinary and fecal excretion of nitrite/nitrate following oral administration to mice

机译:LC-MS / MS的N-15标记的亚硝酸盐/硝酸盐分析:在口服给小鼠口服给药后尿酸盐/硝酸盐的尿和粪便排泄

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Determination of the modulation of nitrite and nitrate levels in biological samples usually poses a major challenge, owing to their high background concentrations. To effectively investigate the variation of nitrite/nitrate in vivo, in this study, we developed a N-15-labelled nitrite/nitrate tracer analysis using LC-MS/MS following the derivatization with 2,3-diaminonaphthalene. This method allows for the determination of N-15-labelled nitrite/nitrate as N-15-2,3-naphthotriazole (N-15-NAT) that can efficiently differentiate newly introduced nitrite/nitrate from the background nitrite/nitrate in biological matrices. We also investigated the contribution of background N-14-NAT isotopomers to N-15-NAT, which has long been overlooked in the literature. Our results indicated that the contribution of background N-14-NAT isotopomers to N-15-NAT is significant. Such contribution is constant (similar to 2.2% under positive ion mode and 1.1% under negative ion mode), and does not depend upon the concentration of N-14-NAT or the sample matrix measured. An equation has been therefore developed, for the first time, to correct the contribution of background N-14-NAT isotopomers to N-15-NAT. With the proposed N-15-la-belled nitrite/nitrate tracer analysis, the amount and percentage distribution of (NO2-)-N-15 and (NO3-)-N-15, both in urine and feces, after oral administration of N-15-labelled nitrite/nitrate are clearly demonstrated. The excretions of (NO2-)-N-15 and (NO3-)-N-15 were significantly increased with the increasing dose implying that the dietary nitrite/nitrate intake is an important source in urine/feces. The present method allows for the simple, reliable and accurate quantification of (NO2-)-N-15 and (NO3-)-N-15, and it should also be useful to trace the biotransformation of nitrite and nitrate in vivo.
机译:由于其高背景浓度,生物样品中亚硝酸盐和硝酸盐水平的测定通常会产生重大挑战。为了有效地研究体内亚硝酸盐/硝酸盐的变化,在该研究中,我们在用2,3-二氨基萘的衍生化之后使用LC-MS / MS开发了N-15标记的亚硝酸盐/硝酸盐示意分析。该方法允许将N-15-标记的亚硝酸盐/硝酸盐作为N-15-2,3-萘甲腈(N-15-NAT)的测定,其可以有效地将新引入的亚硝酸盐/硝酸盐从生物学基质中的背景亚硝酸盐/硝酸盐分化。我们还调查了背景N-14-NAT同位素对N-15-NAT的贡献,这长期被忽视在文献中。我们的结果表明,背景N-14-NAT同位素对N-15-NAT的贡献显着。这种贡献是恒定的(在正离子模式下与2.2%类似,负离子模式下1.1%),不依赖于测量的N-14-NAT或样品基质的浓度。因此,首次开发了一种等式,以校正背景N-14-NAT同位素对N-15-NAT的贡献。随着所提出的N-15-La-Belled亚硝酸盐/硝酸盐示意分析,(NO2 - ) - N-15和(NO3 - ) - N-15的量和百分比,尿液和粪便(NO 3 - ) - N-15在口服给药后明确证明了N-15标记的亚硝酸盐/硝酸盐。随着尿素/硝酸盐摄入量的增加,(NO2 - ) - N-15和(NO3 - ) - N-15和(NO3 - ) - N-15的排泄显着增加,尿素/硝酸盐摄入是尿/粪便中的重要来源。本方法允许(NO2 - ) - N-15和(NO 3 - ) - N-15的简单,可靠和准确的定量,并且还可用于追踪体内亚硝酸盐和硝酸盐的生物转化。

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