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Perturbational Profiling of Metabolites in Patient Fibroblasts Implicates α-Aminoadipate as a Potential Biomarker for Bipolar Disorder

机译:患者成纤维细胞代谢物的微扰分析表明α-氨基己二酸可能是双相情感障碍的潜在生物标志物

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摘要

Many studies suggest the presence of aberrations in cellular metabolism in bipolar disorder. We studied the metabolome in bipolar disorder to gain insight into cellular pathways that may be dysregulated in bipolar disorder and to discover evidence of novel biomarkers. We measured polar and nonpolar metabolites in fibroblasts from subjects with bipolar I disorder and matched healthy control subjects, under normal conditions and with two physiologic perturbations: low-glucose media and exposure to the stress-mediating hormone dexamethasone. Metabolites that were significantly different between bipolar and control subjects showed distinct separation by principal components analysis methods. The most statistically significant findings were observed in the perturbation experiments. The metabolite with the lowest p value in both the low-glucose and dexamethasone experiments was α-aminoadipate, whose intracellular level was consistently lower in bipolar subjects. Our study implicates α-aminoadipate as a possible biomarker in bipolar disorder that manifests under cellular stress. This is an intriguing finding given the known role of α-aminoadipate in the modulation of kynurenic acid in the brain, especially as abnormal kynurenic acid levels have been implicated in bipolar disorder.
机译:许多研究表明双相情感障碍的细胞代谢中存在畸变。我们研究了躁郁症中的代谢组,以深入了解躁郁症中可能失调的细胞途径,并发现新型生物标志物的证据。我们在正常情况下,通过两种生理扰动,从患有双相性I型障碍的受试者和相匹配的健康对照受试者的成纤维细胞中测量了极性和非极性代谢产物:低葡萄糖培养基和暴露于压力介导激素地塞米松的情况。通过主成分分析方法,双相型受试者与对照组之间的代谢物差异显着。在摄动实验中观察到最具有统计意义的发现。在低糖和地塞米松实验中,p值最低的代谢物是α-氨基己二酸,在双相受试者中其细胞内水平始终较低。我们的研究表明,α-氨基己二酸可能是双相情感障碍中可能的生物标志物,其在细胞应激下表现出来。考虑到α-氨基己二酸酯在调节大脑中的尿嘧啶酸中的已知作用,这是一个有趣的发现,特别是因为异常的尿嘧啶酸水平与双相情感障碍有关。

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