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Altered Metabolites in the Plasma of Autism Spectrum Disorder: A Capillary Electrophoresis Time-of-Flight Mass Spectroscopy Study

机译:自闭症谱系障碍血浆中代谢产物的改变:毛细管电泳飞行时间质谱研究

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摘要

Clinical diagnosis and severity of autism spectrum disorders (ASD) are determined by trained clinicians based on clinical evaluations of observed behaviors. As such, this approach is inevitably dependent on the expertise and subjective assessment of those administering the clinical evaluations. There is a need to identify objective biological markers associated with diagnosis or clinical severity of the disorder. To identify novel candidate metabolites as potential biomarkers for ASD, the current study applied capillary electrophoresis time-of-flight mass spectroscopy (CE-TOFMS) for high-throughput profiling of metabolite levels in the plasma of 25 psychotropic-naïve adult males with high-functioning ASD and 28 age-matched typically-developed control subjects. Ten ASD participants and ten age-matched controls were assigned in the first exploration set, while 15 ASD participants and 18 controls were included in the second replication set. By CE-TOFMS analysis, a total of 143 metabolites were detected in the plasma of the first set. Of these, 17 metabolites showed significantly different relative areas between the ASD participants and the controls (p<0.05). Of the 17 metabolites, we consistently found that the ASD participants had significantly high plasma levels of arginine (p = 0.024) and taurine (p = 0.018), and significantly low levels of 5-oxoproline (p<0.001) and lactic acid (p = 0.031) compared with the controls in the second sample set. Further confirmatory analysis using quantification of absolute metabolite concentrations supported the robustness of high arginine (p = 0.001) and low lactic acid (p = 0.003) in the combined sample (n = 53). The present study identified deviated plasma metabolite levels associated with oxidative stress and mitochondrial dysfunction in individuals with ASD.
机译:自闭症谱系障碍(ASD)的临床诊断和严重程度由受过训练的临床医生根据对观察到的行为的临床评估来确定。因此,这种方法不可避免地取决于管理临床评估人员的专业知识和主观评估。需要鉴定与疾病的诊断或临床严重性相关的客观生物学标志物。为了确定新的候选代谢物作为ASD的潜在生物标志物,当前的研究应用毛细管电泳飞行时间质谱(CE-TOFMS)对25名精神轻度的成年男性高血浆中代谢物水平进行高通量分析。功能正常的自闭症患者和28位年龄相匹配的典型发育对照对象。在第一个探索组中分配了10名ASD参与者和10个年龄匹配的对照,而在第二个复制组中包含了15名ASD参与者和18个对照。通过CE-TOFMS分析,在第一组血浆中共检测到143种代谢产物。其中,17种代谢物在ASD参与者和对照组之间显示出显着不同的相对面积(p <0.05)。在这17种代谢产物中,我们始终发现ASD参与者的血浆精氨酸(p = 0.024)和牛磺酸(p = 0.018)显着高,而5-氧代脯氨酸(p <0.001)和乳酸(p = 0.031)与第二个样本集中的对照进行比较。使用绝对代谢物浓度的定量进行的进一步验证性分析支持合并样品中高精氨酸(p = 0.003)和低乳酸(p = 0.003)的稳健性(n = 53)。本研究确定了患有自闭症患者的血浆代谢产物水平与氧化应激和线粒体功能障碍有关。

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