The impact of glutathione metabolism in autism spectrum disorder

被引:45
作者
Bjorklund, Geir [1 ]
Dosa, Monica Daniela [2 ]
Maes, Michael [3 ,4 ]
Dadar, Maryam [5 ]
Frye, Richard E. [6 ,7 ]
Peana, Massimiliano [8 ]
Chirumbolo, Salvatore [9 ,10 ]
机构
[1] Council Nutr & Environm Med CONEM, Toften 24, N-8610 Mo I Rana, Norway
[2] Ovidius Univ Constanta, Fac Med, Dept Pharmacol, Constanta 900470, Romania
[3] Chulalongkorn Univ, Fac Med, Dept Psychiat, Bangkok, Thailand
[4] Deakin Univ, Impact Res Ctr, Geelong, Vic, Australia
[5] Agr Res Educ & Extens Org AREEO, Razi Vaccine & Serum Res Inst, Karaj, Iran
[6] Phoenix Childrens Hosp, Barrow Neurol Inst, Phoenix, AZ USA
[7] Univ Arizona, Dept Child Hlth, Coll Med, Phoenix, AZ USA
[8] Univ Sassari, Dept Chem & Pharm, Sassari, Italy
[9] Univ Verona, Dept Neurosci Biomed & Movement Sci, Verona, Italy
[10] CONEM Sci Secretary, Verona, Italy
关键词
Autism; Glutathione; Oxidized glutathione; Glutathione redox ratio; OXIDATIVE GLUTAMATE TOXICITY; OXYGEN SPECIES PRODUCTION; INBRED MOUSE STRAINS; N-ACETYLCYSTEINE; MITOCHONDRIAL GLUTATHIONE; REDOX IMBALANCE; NADPH OXIDASE; DOUBLE-BLIND; CROSS-TALK; PHYSIOLOGICAL FUNCTIONS;
D O I
10.1016/j.phrs.2021.105437
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
This paper reviews the potential role of glutathione (GSH) in autism spectrum disorder (ASD). GSH plays a key role in the detoxification of xenobiotics and maintenance of balance in intracellular redox pathways. Recent data showed that imbalances in the GSH redox system are an important factor in the pathophysiology of ASD. Furthermore, ASD is accompanied by decreased concentrations of reduced GSH in part caused by oxidation of GSH into glutathione disulfide (GSSG). GSSG can react with protein sulfhydryl (SH) groups, thereby causing proteotoxic stress and other abnormalities in SH-containing enzymes in the brain and blood. Moreover, alterations in the GSH metabolism via its effects on redox-independent mechanisms are other processes associated with the pathophysiology of ASD. GSH-related regulation of glutamate receptors such as the N-methyl-Daspartate receptor can contribute to glutamate excitotoxicity. Synergistic and antagonistic interactions between glutamate and GSH can result in neuronal dysfunction. These interactions can involve transcription factors of the immune pathway, such as activator protein 1 and nuclear factor (NF)-kappa B, thereby interacting with neuroinflammatory mechanisms, ultimately leading to neuronal damage. Neuronal apoptosis and mitochondrial dysfunction are recently outlined as significant factors linking GSH impairments with the pathophysiology of ASD. Moreover, GSH regulates the methylation of DNA and modulates epigenetics. Existing data support a protective role of the GSH system in ASD development. Future research should focus on the effects of GSH redox signaling in ASD and should explore new therapeutic approaches by targeting the GSH system.
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页数:14
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