化学
代谢物
次黄嘌呤
苯丙氨酸
羟赖氨酸
色谱法
质谱法
注意缺陷多动障碍
代谢组学
高效液相色谱法
代谢组
内科学
氨基酸
生物化学
心理学
医学
酶
赖氨酸
精神科
作者
Liang‐Jen Wang,Wen‐Jiun Chou,Ching‐Shu Tsai,Min‐Jing Lee,Sheng-Yu Lee,Chia‐Wei Hsu,Pei‐Chun Hsueh,Chih‐Ching Wu
标识
DOI:10.1080/15622975.2020.1762930
摘要
Objectives Metabolites are the intermediate and final products of biological processes and ultimately reflect the responses of these processes to genetic regulation and environmental perturbations, including those involved in attention deficit/hyperactivity disorder (ADHD).Methods We identified a quantitative profile of plasma metabolites in 58 ADHD patients (mean age 9.0 years, 77.6% males) and 38 healthy control subjects (mean age 10.2 years, 55.3% males) using the high-performance chemical isotope labelling (CIL)-based liquid chromatography-mass spectrometry (LC-MS). Using a volcano plot and orthogonal projections to latent structure-discriminant analysis (OPLS-DA), we determined nine metabolites with differentially expressed levels in ADHD plasma samples.Results Compared to the control group, the plasma levels of guanosine, O-phosphoethanolamine, phenyl-leucine, hypoxanthine, 4-aminohippuric acid, 5-hydroxylysine, and L-cystine appeared increased in the ADHD patients, whilegentisic acid and tryptophyl-phenylalanine were down-regulated in the patients with ADHD. We found that the plasma levels of all nine metabolites were able to discriminate the ADHD group from the control group. Levels of O-phosphoethanolamine, 4-aminohippuric acid, 5-hydroxylysine, L-cystine, tryptophyl-phenylalanine, and gentisic acid were significantly correlated with clinical ADHD symptoms.Conclusions This study is the first to use the CIL-based LC-MS to profile ADHD plasma metabolites, and we identified nine novel metabolite biomarkers of ADHD.
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