13 C4标记的4-氰基-2-氧丁醛缩氨基脲的合成和光谱表征:硝基呋喃酮的代谢物。

IF 0.9 4区 医学 Q4 BIOCHEMICAL RESEARCH METHODS Journal of labelled compounds & radiopharmaceuticals Pub Date : 2023-12-03 DOI:10.1002/jlcr.4077
Anuradha Singh, David J. Smith, Gary D. Strahan, Steven J. Lehotay
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引用次数: 0

摘要

包括美国在内的大多数国家都禁止在食用动物中使用硝基呋喃酮。监管机构通过测量氨基脲(SEM)代谢物作为硝基呋喃酮暴露的生物标志物,定期监测其在国内和进出口动物食品中的使用情况。然而,扫描电镜的使用是有争议的,因为它也在食物中自然产生,因此会产生假阳性结果。一种氰基代谢物,4-氰基-2-氧丁醛缩氨基脲(COBS),被提议作为硝基呋喃酮的替代特异性标记物,以区分硝基呋喃酮与治疗或未治疗的动物。研究了硝基呋喃酮金属加氢法制备COBS的合成方法。通过一、二维核磁谱(NMR)实验、傅里叶变换红外光谱(FT-IR)和质谱分析对产物进行了分离和表征。将所建立的合成方法进一步扩展到合成同位素标记的4-[13c]-氰基-2-氧-[2,3,4 -13 C3]-丁醛缩氨基脲。标记COBS可作为食用动物中COBS定量的内部标准。因此,该方法为其商业化合成制备COBS提供了可能。这是第一次合成硝基呋喃酮的替代特异性标记代谢物,可能用于监管分析,以解决现实世界的问题。
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Synthesis and spectroscopic characterization of 13C4-labeled 4-cyano-2-oxobutyraldehyde semicarbazone: A metabolite of nitrofurazone

Nitrofurazone usage in food-producing animals is prohibited in most countries, including the United States. Regulatory agencies regularly monitor its use in domestic, export/import animals' food products by measuring the semicarbazide (SEM) metabolite as a biomarker of nitrofurazone exposure. However, the use of SEM is controversial because it is also produced in food naturally and thus gives false positive results. A cyano-metabolite, 4-cyano-2-oxobutyraldehyde semicarbazone (COBS), is proposed as an alternate specific marker of nitrofurazone to distinguish nitrofurazone from treated or untreated animals. A synthetic method was developed to produce COBS via metallic hydrogenation of nitrofurazone. The product was isolated and characterized by one- and two-dimensional nuclear magnetic spectroscopy (NMR) experiments, Fourier-transform infrared spectroscopy (FT-IR), and mass spectrometry. The developed synthetic procedure was further extended to synthesize isotopically labeled 4-[13C]-cyano-2-oxo- [2, 3, 4-13C3]-butyraldehyde semicarbazone. Labeled COBS is useful as an internal standard for its quantification in food-producing animals. Thus, the developed method provides a possibility for its commercial synthesis to procure COBS. This is the first synthesis of the alternate specific marker metabolite of nitrofurazone for possible usage in regulatory analysis to solve a real-world problem.

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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
57
审稿时长
1 months
期刊介绍: The Journal of Labelled Compounds and Radiopharmaceuticals publishes all aspects of research dealing with labeled compound preparation and applications of these compounds. This includes tracer methods used in medical, pharmacological, biological, biochemical and chemical research in vitro and in vivo. The Journal of Labelled Compounds and Radiopharmaceuticals devotes particular attention to biomedical research, diagnostic and therapeutic applications of radiopharmaceuticals, covering all stages of development from basic metabolic research and technological development to preclinical and clinical studies based on physically and chemically well characterized molecular structures, coordination compounds and nano-particles.
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