Zhang Wen, Sun Jiao, Wang Fang, Liu Jiang, Han Ying, Jiang Miao, Tang Dongqi
Institute of Medical Sciences, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan 250033, People's Republic of China.
Anal Methods. 2021 Mar 28;13(12):1527-1534. doi: 10.1039/d0ay02353a. Epub 2021 Mar 12.
Trimethylamine N-oxide (TMAO), a gut microbial metabolite involved in cardiovascular and kidney diseases, has great potential as a biomarker, thus making TMAO quantification of great significance. The current assay methods are mainly established on mass spectrometry. However, the classic enzymatic approach is absent, which may be because there is no appropriate single-enzyme reaction. Here, we prepared TMAO demethylase and formaldehyde dehydrogenase and found that these two bacterial enzymes catalyze an efficient coupled reaction that produces NADH from TMAO conversion. With the participation of another enzyme, diaphorase, the multienzymatic coupling system was constructed, which realizes the output of fluorescence signals from TMAO input using resazurin as a probe, thus laying the foundation for fluorescent assay. Through optimization, the sensitivity and specificity were improved. A pretreatment procedure was developed to eliminate formaldehyde that pre-exists with TMAO to avoid an interference effect. Our assay is suitable for quantifying serum TMAO in the range of 2.05-50 μM, covering actual levels in clinical samples, and exhibits a high degree of accordance with mass spectrometry. Therefore, the established fluorometric microplate assay is facile, sensitive and accurate and may enable low-cost and high-throughput analysis of TMAO in clinical laboratory diagnosis.
氧化三甲胺(TMAO)是一种与心血管疾病和肾脏疾病相关的肠道微生物代谢产物,作为生物标志物具有巨大潜力,因此TMAO定量具有重要意义。目前的检测方法主要基于质谱法。然而,经典的酶法不存在,这可能是因为没有合适的单酶反应。在此,我们制备了TMAO脱甲基酶和甲醛脱氢酶,发现这两种细菌酶催化一种高效的偶联反应,该反应从TMAO转化中产生NADH。在另一种酶——黄递酶的参与下,构建了多酶偶联系统,该系统以刃天青为探针,实现了从TMAO输入到荧光信号的输出,从而为荧光检测奠定了基础。通过优化,提高了灵敏度和特异性。开发了一种预处理程序来消除与TMAO共存的甲醛,以避免干扰效应。我们的检测方法适用于定量2.05 - 50μM范围内的血清TMAO,涵盖临床样本中的实际水平,并且与质谱法高度一致。因此,所建立的荧光微孔板检测方法简便、灵敏且准确,可能使临床实验室诊断中TMAO的低成本、高通量分析成为可能。