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首页> 外文期刊>Antioxidants and redox signalling >The role of energy metabolism dysfunction and oxidative stress in schizophrenia revealed by proteomics.
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The role of energy metabolism dysfunction and oxidative stress in schizophrenia revealed by proteomics.

机译:蛋白质组学揭示了能量代谢功能障碍和氧化应激在精神分裂症中的作用。

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Schizophrenia is a psychiatric illness that affects approximately 30 million people worldwide. Converging lines of evidence suggest that mitochondrial function may be compromised in this disorder, and this can lead to perturbations in calcium buffering, oxidative phosphorylation, increased production of reactive oxygen species, and apoptotic factors, which can, in turn, affect neuronal processes such as neurotransmitter synthesis and synaptic plasticity. Proteomics studies in brain and peripheral tissues of schizophrenia patients have provided considerable evidence and identified biomarker fingerprints corresponding to such pathways. Here we review the results of these studies with a focus on the biomarker pattern depicting alterations in energy metabolism and oxidative stress in this debilitating illness.
机译:精神分裂症是一种精神疾病,全世界约有3000万人受其影响。越来越多的证据表明,在这种疾病中线粒体功能可能受到损害,这可能导致钙缓冲液紊乱,氧化磷酸化,活性氧生成增加以及凋亡因子,进而可以影响神经元过程,例如神经递质合成和突触可塑性。在精神分裂症患者的大脑和外周组织中进行的蛋白质组学研究已提供了大量证据,并确定了与此类途径相对应的生物标志物指纹。在这里,我们以这些生物标志物模式为重点,回顾了这些研究的结果,这些生物标志物模式描述了这种衰弱性疾病中能量代谢和氧化应激的改变。

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