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首页> 外文期刊>Clinical Psychopharmacology and Neuroscience >High Serum Levels of Serum 100 Beta Protein, Neuron-specific Enolase, Tau, Active Caspase-3, M30 and M65 in Children with Autism Spectrum Disorders
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High Serum Levels of Serum 100 Beta Protein, Neuron-specific Enolase, Tau, Active Caspase-3, M30 and M65 in Children with Autism Spectrum Disorders

机译:高血清血清血清100β蛋白,神经元特异性烯醇酶,TAU,活性Caspase-3,M30和M65的自闭症谱系统儿童

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Objective The purpose of this study was therefore to investigate whether neuronal, axonal, and glial cell markers (Neuron-specific enolase [NSE], tau, serum 100 beta protein [S100B], respectively) and apoptosis markers (active caspase 3, M30, M65) and whether these parameters can be used as diagnostic biomarkers in autism spectrum disorders (ASD). Methods This study measured the serum S100B, NSE, tau, active caspase 3, M30, and M65 levels in 43 patients with ASD (aged 3?12 years) and in 41 age- and sex-matched healthy controls. ASD severity was rated using the Childhood Autism Rating Scale. The serum levels were determined in the biochemistry laboratory using the ELISA technique. The receiver operator characteristics curve method was employed to evaluate the accuracy of the parameters in diagnosing ASD. Results Serum S100B, tau, NSE, active caspase-3, M30, and M65 levels were significantly higher in the patient group than in the control group ( p 0.001, p = 0.002, p = 0.002, p = 0.005, p 0.001, and p = 0.004, respectively). The cut-off value of S100B was 48.085 pg/ml (sensitivity: 74.4%, specificity: 80.5%, areas under the curve: 0.879, p 0.001). Conclusion Apoptosis increased in children with ASD, and neuronal, axonal, and glial cell injury was observed. In addition, S100B may be an important diagnostic biomarker in patients with ASD. Apoptosis, and neuronal, axonal and astrocyte pathologies may play a significant role in the pathogenesis of ASD, and further studies are now required to confirm this.
机译:目的是该研究的目的是研究神经元,轴突和胶质细胞标志物(神经元特异性烯醇酶[NSE],Tau,血清100β蛋白[S100B],分别是凋亡标记物(活性胱天冬酶3,M30, M65)以及这些参数是否可用作自闭症谱系障碍(ASD)中的诊断生物标志物。方法本研究测量了43例ASD(3岁(12年)和41岁和性别匹配的健康对照中43例血清S100b,nse,tau,活性胱天蛋酶3,m30和m65水平,并在41岁和性别匹配的健康对照中。 ASD严重程度使用童年自闭症评级规模评定。使用ELISA技术在生物化学实验室中测定血清水平。接收器操作特性曲线方法用于评估诊断ASD参数的准确性。结果血清S100B,TAU,NSE,活性Caspase-3,M30和M65水平在患者组中显着高于对照组(P <0.001,P = 0.002,P = 0.002,P = 0.005,P <0.001 ,分别为p = 0.004)。 S100b的截止值为48.085pg / ml(敏感性:74.4%,特异性:80.5%,曲线下的区域:0.879,P <0.001)。结论观察到患有ASD和神经元,轴突和神经胶质细胞损伤的细胞凋亡。此外,S100B可以是ASD患者的重要诊断生物标志物。细胞凋亡和神经元,轴突和星形胶质细胞病理可能在ASD的发病机制中发挥重要作用,现在需要进一步的研究来证实这一点。

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