首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Cerebrospinal Fluid Neurofilament Light Chain Is Associated with Kynurenine Pathway Metabolite Changes in Multiple Sclerosis
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Cerebrospinal Fluid Neurofilament Light Chain Is Associated with Kynurenine Pathway Metabolite Changes in Multiple Sclerosis

机译:脑脊液神经丝轻链与多发性硬化症中的Kynurenine途径代谢产物变化有关。

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摘要

Neurofilament light (NFL) has proved to be a good prognostic factor in multiple sclerosis (MS), as its level is proportionally elevated with extended neuraxonal damage. The involvement of the kynurenine pathway in neuroinflammation has been proved. The precursor of this pathway is the essential amino acid tryptophan, which is catabolized 95% towards kynurenine metabolites. Quinolinic acid (QUIN) within the brain is only produced in activated microglia and macrophages, leading to axonal degeneration via the activation of N-Methyl-D-aspartate receptors. Neopterin is a biomarker for inflammation produced by macrophages. The association of these biomarkers has not previously been investigated. Our aim was to assess whether there is an association of the neurodegenerative biomarker NFL with the markers of neuroinflammation, e.g., kynurenine metabolites and neopterin, in the cerebrospinal fluid (CSF). CSF samples of patients with MS (pwMS; = 37) and age-matched controls ( = 22) were compared for NFL levels by ELISA, while the kynurenine pathway metabolites tryptophan and neopterin were detected with mass spectrometry. Spearman’s correlation showed that NFL is an independent predictor of neurological disability in the MS group. Significant correlations were found between NFL, neopterin, and QUIN, and between kynurenine and neopterin. Receiver operating characteristic (ROC) curve analysis was used to plot the top three best predictors of MS-related disability that yielded the best specificity and sensitivity. Normalized NFL (AUC: 0.923), QUIN (AUC: 0.803), and neopterin (AUC: 0.843) were the best independent predictors of neurological disability in pwMS. The CSF NFL and CSF QUIN, together with neopterin, were elevated in the CSF of pwMS compared to controls. The combination of the neurodegenerative biomarkers together with biomarkers of neuroinflammation could provide additional information on the underlying pathomechanism of disease activity, which is essential for the identification of patients at risk of developing cumulative disabilities.
机译:神经丝灯(NFL)已被证明是多发性硬化症(MS)的良好预后因素,因为其水平随着神经延髓损害的扩大而按比例升高。犬尿氨酸途径参与了神经炎症。该途径的前体是必需氨基酸色氨酸,它被催化代谢为犬尿氨酸代谢产物95%。大脑中的喹啉酸(QUIN)仅在活化的小胶质细胞和巨噬细胞中产生,通过激活N-甲基-D-天冬氨酸受体导致轴突变性。新蝶呤是巨噬细胞产生炎症的生物标志物。这些生物标志物的关联以前尚未进行过调查。我们的目的是评估脑脊髓液(CSF)中神经退行性生物标志物NFL是否与神经炎症标志物(例如犬尿氨酸代谢产物和新蝶呤)相关联。 MS(pwMS; = 37)和年龄匹配的对照组(= 22)的CSF样本通过ELISA进行了NFL水平比较,而犬尿氨酸途径代谢产物色氨酸和新蝶呤通过质谱检测。 Spearman的相关性表明,NFL是MS组神经系统残疾的独立预测因子。发现NFL,新蝶呤和QUIN之间以及犬尿氨酸和新蝶呤之间存在显着相关性。接受者工作特征(ROC)曲线分析用于绘制MS相关残疾的前三个最佳预测指标,这些预测指标产生了最佳的特异性和敏感性。标准化NFL(AUC:0.923),QUIN(AUC:0.803)和新蝶呤(AUC:0.843)是pwMS中神经功能障碍的最佳独立预测因子。与对照组相比,pwMS的CSF中CSF NFL和CSF QUIN以及新蝶呤均升高。神经退行性生物标志物与神经发炎生物标志物的组合可以提供有关疾病活动潜在病机的其他信息,这对于鉴定有发展为累积残疾风险的患者至关重要。

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