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采用亲水作用色谱-超高液相色谱-高分辨质谱法分析人血浆中嘌呤降解途径代谢物的代谢特征。

Metabolic signatures of metabolites of the purine degradation pathway in human plasma using HILIC UHPLC-HRMS.

机构信息

School of Public Health, Shenyang Medical College, Shenyang 110034, China.

School of Public Health, Shenyang Medical College, Shenyang 110034, China; Key Lab of Environmental Pollution and Microecology of Liaoning Province, Shenyang 110034, China.

出版信息

J Pharm Biomed Anal. 2024 Dec 15;251:116451. doi: 10.1016/j.jpba.2024.116451. Epub 2024 Aug 26.

Abstract

The metabolic disorders in the purine degradation pathway have proven to be closely associated with several human diseases. However, the etiology is not yet fully understood. Profile assay of purine intermediates and uric acid involved in the metabolic pathway can provide additional insight into the nature and severity of related diseases. Purine metabolites are endogenous chemicals with high hydrophilicity, polarity, and similar structures, thus there is a great need for a specific method to quantify them directly in biological fluids with a short running time. Herein, eight purine degradation pathway metabolites, including xanthine, hypoxanthine, guanine, xanthosine, inosine, guanosine, adenosine and uric acid, in human plasma were quantitatively measured using hydrophilic interaction chromatography-tandem high-resolution mass spectrometry (HILIC-HRMS) in a short running time of 10 min. The method was systematically validated for specificity, linearity of the calibration curve, the limit of detection, the limit of quantification, the lower limit of quantification, precision, accuracy, extraction recovery, matrix effect, and stability. The results showed that the method was linear (R > 0.99), accurate (the intra- and inter-day recoveries of all analytes ranged from 90.0 % to 110.0 %), and precise (the intra- and inter-day precisions were less than 6.7 % and 8.9 %, respectively) with the lower limits of quantification ranging from 3 to 10,000 ng/mL. The extraction recoveries and matrix effects were repeatable and stable. All the analytes were stable in the autosampler and could be subject to three freeze-thaw cycles. The developed method was ultimately applied to 100 plasma specimens from healthy individuals. The results showed that the concentrations of different purine metabolites varied dramatically in plasma specimens. Diet and body mass index (BMI) were the most significant factors determining purine levels, followed by drinking and sex. Age, smoking and bedtime showed a very weak correlation with purine metabolism. The findings of the present work reveal the characteristics of purine metabolism in human plasma under non-pathological conditions. The results also highlight the factors that can cause changes in purine metabolism, which are useful in developing effective treatment strategies for metabolic disorders of purines, particularly for those caused by lifestyle factors.

摘要

嘌呤降解途径中的代谢紊乱已被证明与多种人类疾病密切相关。然而,其病因尚未完全阐明。参与代谢途径的嘌呤中间产物和尿酸的谱分析可以为相关疾病的性质和严重程度提供更多的了解。嘌呤代谢物是具有高亲水性、极性和相似结构的内源性化学物质,因此非常需要一种特定的方法来直接在生物流体中在短时间内对其进行定量。在此,采用亲水作用色谱-串联高分辨率质谱(HILIC-HRMS)在 10 分钟的短运行时间内定量测定了人血浆中的 8 种嘌呤降解途径代谢物,包括黄嘌呤、次黄嘌呤、鸟嘌呤、黄苷、肌苷、鸟苷、腺苷和尿酸。该方法对特异性、校准曲线的线性、检测限、定量限、定量下限、精密度、准确度、提取回收率、基质效应和稳定性进行了系统验证。结果表明,该方法具有线性(R>0.99)、准确(所有分析物的日内和日间回收率均在 90.0%至 110.0%之间)和精确(日内和日间精密度均小于 6.7%和 8.9%),定量下限范围为 3 至 10,000ng/mL。提取回收率和基质效应具有重复性和稳定性。所有分析物在自动进样器中均稳定,可经受三次冻融循环。该方法最终应用于 100 份来自健康个体的血浆标本。结果表明,不同嘌呤代谢物在血浆标本中的浓度差异很大。饮食和体重指数(BMI)是决定嘌呤水平的最主要因素,其次是饮酒和性别。年龄、吸烟和就寝时间与嘌呤代谢的相关性很弱。本研究结果揭示了非病理条件下人血浆中嘌呤代谢的特征。结果还突出了可导致嘌呤代谢变化的因素,这对于开发嘌呤代谢紊乱的有效治疗策略,特别是对于由生活方式因素引起的嘌呤代谢紊乱,具有重要意义。

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