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线粒体功能障碍、线粒体氧改变和能量代谢与精神分裂症发病机制相关。

Mitochondrial Dysfunction, Altered Mitochondrial Oxygen, and Energy Metabolism Associated with the Pathogenesis of Schizophrenia.

机构信息

Outpatient Psychiatry Clinic, 965 01 Žiar nad Hronom, Slovakia.

1st Department of Psychiatry, Faculty of Medicine, University of P. J. Šafárik, 040 11 Košice, Slovakia.

出版信息

Int J Mol Sci. 2023 Apr 28;24(9):7991. doi: 10.3390/ijms24097991.

Abstract

The significant complexity of the brain can lead to the development of serious neuropsychiatric disorders, including schizophrenia. A number of mechanisms are involved in the etiopathogenesis of schizophrenia, pointing to its complexity and opening a new perspective on studying this disorder. In this review of currently published studies, we focused on the contribution of mitochondria to the process, with an emphasis on oxidative damage, ROS, and energy metabolism. In addition, we point out the influence of redox imbalance, which can lead to the occurrence of oxidative stress with increased lipid peroxidation, linked to the formation of toxic aldehydes such as 4-hydroxynonenal (4-HNE) and HNE protein adducts. We also analysed the role of lactate in the process of energy metabolism and cognitive functions in schizophrenia.

摘要

大脑的显著复杂性可能导致严重的神经精神疾病的发展,包括精神分裂症。许多机制参与了精神分裂症的病因发病机制,这表明其复杂性,并为研究这种疾病开辟了新的视角。在对目前已发表的研究的综述中,我们重点关注了线粒体对该过程的贡献,特别强调了氧化损伤、ROS 和能量代谢。此外,我们指出了氧化还原失衡的影响,这可能导致氧化应激的发生,脂质过氧化增加,与形成有毒醛如 4-羟基壬烯醛 (4-HNE) 和 HNE 蛋白加合物有关。我们还分析了乳酸在精神分裂症能量代谢和认知功能中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da74/10178941/94477f75a57f/ijms-24-07991-g001.jpg

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