Assessment of oxidative stress in autism spectrum disorder using reactive oxygen metabolites and biological antioxidant potential
There are several studies on oxidative stress of Autism Spectrum Disorder (ASD), but in these cases there is no study to measure oxidative stress and antioxidant capacity at the same time or studies considering childhood development. Therefore, this study comprehensively assessed the level of oxidat...
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Published in | PloS one Vol. 15; no. 5; p. e0233550 |
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Abstract | There are several studies on oxidative stress of Autism Spectrum Disorder (ASD), but in these cases there is no study to measure oxidative stress and antioxidant capacity at the same time or studies considering childhood development. Therefore, this study comprehensively assessed the level of oxidative stress in ASD children by simultaneously measuring reactive oxygen metabolites (d-ROMs) and biological antioxidant potential (BAP). The subjects were Japanese, 77 typical development (TD) children, 98 ASD children, samples were plasma. The subjects were divided into age groups: toddlers/preschool age (2-6 years) and school age (7-15 years), to compare the relationships among the d-ROMs levels and BAP/d-ROMs ratios. Furthermore, the correlations between the Parent-interview ASD Rating Scales (PARS) scores and the measured values were analyzed. The levels of d-ROMs were significantly higher in the ASD (7-15 years) than in TD (7-15 years). The PARS scores were significantly higher in the ASD and were significantly correlated with d-ROMs levels. These results suggested that d-ROMs and BAP/d-ROMs ratios could be objective, measured indicators that could be used in clinical practice to assess stress in ASD children. |
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AbstractList | There are several studies on oxidative stress of Autism Spectrum Disorder (ASD), but in these cases there is no study to measure oxidative stress and antioxidant capacity at the same time or studies considering childhood development. Therefore, this study comprehensively assessed the level of oxidative stress in ASD children by simultaneously measuring reactive oxygen metabolites (d-ROMs) and biological antioxidant potential (BAP). The subjects were Japanese, 77 typical development (TD) children, 98 ASD children, samples were plasma. The subjects were divided into age groups: toddlers/preschool age (2–6 years) and school age (7–15 years), to compare the relationships among the d-ROMs levels and BAP/d-ROMs ratios. Furthermore, the correlations between the Parent-interview ASD Rating Scales (PARS) scores and the measured values were analyzed. The levels of d-ROMs were significantly higher in the ASD (7–15 years) than in TD (7–15 years). The PARS scores were significantly higher in the ASD and were significantly correlated with d-ROMs levels. These results suggested that d-ROMs and BAP/d-ROMs ratios could be objective, measured indicators that could be used in clinical practice to assess stress in ASD children. There are several studies on oxidative stress of Autism Spectrum Disorder (ASD), but in these cases there is no study to measure oxidative stress and antioxidant capacity at the same time or studies considering childhood development. Therefore, this study comprehensively assessed the level of oxidative stress in ASD children by simultaneously measuring reactive oxygen metabolites (d-ROMs) and biological antioxidant potential (BAP). The subjects were Japanese, 77 typical development (TD) children, 98 ASD children, samples were plasma. The subjects were divided into age groups: toddlers/preschool age (2-6 years) and school age (7-15 years), to compare the relationships among the d-ROMs levels and BAP/d-ROMs ratios. Furthermore, the correlations between the Parent-interview ASD Rating Scales (PARS) scores and the measured values were analyzed. The levels of d-ROMs were significantly higher in the ASD (7-15 years) than in TD (7-15 years). The PARS scores were significantly higher in the ASD and were significantly correlated with d-ROMs levels. These results suggested that d-ROMs and BAP/d-ROMs ratios could be objective, measured indicators that could be used in clinical practice to assess stress in ASD children.There are several studies on oxidative stress of Autism Spectrum Disorder (ASD), but in these cases there is no study to measure oxidative stress and antioxidant capacity at the same time or studies considering childhood development. Therefore, this study comprehensively assessed the level of oxidative stress in ASD children by simultaneously measuring reactive oxygen metabolites (d-ROMs) and biological antioxidant potential (BAP). The subjects were Japanese, 77 typical development (TD) children, 98 ASD children, samples were plasma. The subjects were divided into age groups: toddlers/preschool age (2-6 years) and school age (7-15 years), to compare the relationships among the d-ROMs levels and BAP/d-ROMs ratios. Furthermore, the correlations between the Parent-interview ASD Rating Scales (PARS) scores and the measured values were analyzed. The levels of d-ROMs were significantly higher in the ASD (7-15 years) than in TD (7-15 years). The PARS scores were significantly higher in the ASD and were significantly correlated with d-ROMs levels. These results suggested that d-ROMs and BAP/d-ROMs ratios could be objective, measured indicators that could be used in clinical practice to assess stress in ASD children. |
Audience | Academic |
Author | Nakatsu, Tadanori Kitaoka, Taisuke Kyotani, Shojiro Morimoto, Masahito Tsuda, Yoshimi Hashimoto, Toshiaki |
AuthorAffiliation | 1 Department of pharmacy, Japanese Red Cross Tokushima Hinomine Rehabilitation Center for People with Disabilities, Tokushima, Japan 2 Department of pediatrics, Japanese Red Cross Tokushima Hinomine Rehabilitation Center for People with Disabilities, Tokushima, Japan Brown University, UNITED STATES 3 Graduate School of Pharmaceutical Sciences, Tokushima Bunri University, Tokushima, Japan |
AuthorAffiliation_xml | – name: Brown University, UNITED STATES – name: 1 Department of pharmacy, Japanese Red Cross Tokushima Hinomine Rehabilitation Center for People with Disabilities, Tokushima, Japan – name: 2 Department of pediatrics, Japanese Red Cross Tokushima Hinomine Rehabilitation Center for People with Disabilities, Tokushima, Japan – name: 3 Graduate School of Pharmaceutical Sciences, Tokushima Bunri University, Tokushima, Japan |
Author_xml | – sequence: 1 givenname: Masahito orcidid: 0000-0003-0358-1966 surname: Morimoto fullname: Morimoto, Masahito – sequence: 2 givenname: Toshiaki surname: Hashimoto fullname: Hashimoto, Toshiaki – sequence: 3 givenname: Yoshimi surname: Tsuda fullname: Tsuda, Yoshimi – sequence: 4 givenname: Tadanori surname: Nakatsu fullname: Nakatsu, Tadanori – sequence: 5 givenname: Taisuke surname: Kitaoka fullname: Kitaoka, Taisuke – sequence: 6 givenname: Shojiro surname: Kyotani fullname: Kyotani, Shojiro |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/32442231$$D View this record in MEDLINE/PubMed |
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Snippet | There are several studies on oxidative stress of Autism Spectrum Disorder (ASD), but in these cases there is no study to measure oxidative stress and... |
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SubjectTerms | Age Antioxidants Antioxidants (Nutrients) Autism Balances (scales) Biology and Life Sciences Childhood Children Diagnosis Disease Free radicals Health aspects Insomnia Intelligence tests Levels Males Medicine and Health Sciences Metabolites Oxidation Oxidative stress Oxygen Pediatric research Pediatrics People and Places People with disabilities Pervasive developmental disorders Pharmaceutical sciences Physical Sciences Rehabilitation Social Sciences Time |
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Title | Assessment of oxidative stress in autism spectrum disorder using reactive oxygen metabolites and biological antioxidant potential |
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