The Mechanism of Frabot Test for Uric Acid

F. Sánchez-Viesca, Reina Gómez
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引用次数: 0

Abstract

Uric acid is an Analyte. Excess uric acid ─ hyperuricemia ─ leads to gout and renal stones. Frabot noted that uric acid added to an alkaline tungstate solution developed an intense blue colour. A colorimetric method widely utilized to quantify uric acid depends on the reduction of the chromogen sodium tungstate by uric acid to produce a measurable colour change. The reaction route from the initial products to the coloured compounds and the oxido-degradation of the organic substance has not been advanced. In this communication the electron flow is given in each step of the series of reactions that take place. These are isomerization to imidol, Michael addition to enone, oxirane formation in a redox step, hydrolysis of imido group, oxirane ring opening, ring contraction to five- member ring, ring opening via alkoxide, and finally assisted decarboxylation to the end product, 5-ureido hydantoin (allantoin).
Frabot试验测定尿酸的作用机制
尿酸是一种分析物。尿酸过量──高尿酸血症──会导致痛风和肾结石。弗拉博特注意到,将尿酸加入碱性钨酸盐溶液中,会呈现出强烈的蓝色。一种广泛用于定量尿酸的比色法依赖于尿酸对显色剂钨酸钠的还原,以产生可测量的颜色变化。从初始产物到有色化合物的反应路线以及有机物的氧化降解尚未深入研究。在这种通信中,电子流在发生的一系列反应的每一步中都是给定的。这些步骤是异构化成亚胺,迈克尔加成烯酮,氧化还原步骤形成氧环,亚胺基水解,氧环开环,环收缩成五元环,通过醇氧化合物开环,最后辅助脱羧生成最终产物5-尿囊素(尿囊素)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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