NMR-Based Metabolomics of Rat Hippocampus, Serum, and Urine in Two Models of Autism

被引:0
作者
B. Toczylowska
E. Zieminska
R. Polowy
K. H. Olszynski
J. W. Lazarewicz
机构
[1] Polish Academy of Sciences,Nalecz Institute of Biocybernetics and Biomedical Engineering
[2] Polish Academy of Sciences,Mossakowski Medical Research Institute
来源
Molecular Neurobiology | 2022年 / 59卷
关键词
Rat ASD models; NMR spectroscopy; Serum; Urine; Brain; Metabolic profiles;
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学科分类号
摘要
Autism spectrum disorders (ASDs) are increasingly diagnosed as developmental disabilities of unclear etiology related to genetic, epigenetic, or environmental factors. The diagnosis of ASD in children is based on the recognition of typical behavioral symptoms, while no reliable biomarkers are available. Rats in whom ASD-like symptoms are due to maternal administration of the teratogenic drugs valproate or thalidomide on critical day 11 of pregnancy are widely used models in autism research. The present studies, aimed at detecting changes in the levels of hydrophilic and hydrophobic metabolites, were carried out on 1-month-old rats belonging to the abovementioned two ASD models and on a control group. Analysis of both hydrophilic and hydrophobic metabolite levels gives a broader view of possible mechanisms involved in the pathogenesis of autism. Hippocampal proton magnetic resonance (MRS) spectroscopy and ex vivo nuclear magnetic resonance (NMR) analysis of serum and urine samples were used. The results were analyzed using advanced statistical tests. Both the results of our present MRS studies of the hippocampus and of the NMR studies of body fluids in both ASD models, particularly from the THAL model, appeared to be consistent with previously published NMR results of hippocampal homogenates and data from the literature on autistic children. We detected symptoms of disturbances in neurotransmitter metabolism, energy deficit, and oxidative stress, as well as intestinal malfunction, which shed light on the pathogenesis of ASD and could be used for diagnostic purposes. These results confirm the usefulness of the noninvasive techniques used in ASD studies.
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页码:5452 / 5475
页数:23
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