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Updated: May 9, 2025

Author Spotlight: Innovating Thiol Quantification and Biomarker Detection for Oxidative Stress Research
Published on: June 28, 2024
Oxidative Stress and Dynamic Thiol/Disulfide Homeostasis in Autism: A Focus on Early Childhood
Halenur Teke1, Senay Balci2, Salim Neselioglu3
1Department of Child and Adolescent Psychiatry, Medical Faculty, Mersin University, Ankara, Turkey. drhalenurteke@gmail.com.
Insights
Oxidative stress (OS) biomarkers, including novel dynamic thiol/disulfide homeostasis (DTDH) measures, showed no significant differences in preschool children with autism spectrum disorder (ASD). Age may be a critical factor in OS-related autism alterations, warranting further age-stratified research.
Area of Science:
- Neuroscience
- Biochemistry
- Developmental Pediatrics
Background:
- Oxidative stress (OS) is a proposed factor in autism spectrum disorder (ASD) pathogenesis.
- Dynamic thiol/disulfide homeostasis (DTDH) is a novel biomarker for OS.
- Understanding OS in early childhood ASD is crucial.
Purpose of the Study:
- To evaluate plasma DTDH and classical OS biomarkers in preschool children with ASD.
- To assess the relationship between OS markers and autism severity.
- To investigate OS dynamics in early developmental stages of ASD.
Main Methods:
- Compared OS biomarkers (DTDH, TOS, TAS, OSI, glutathione, GPx) in 49 children with ASD and 31 controls (ages 2-6).
- Utilized automated spectrophotometric analysis for blood samples.
- Assessed autism severity using CARS and CGI-S scales.
Main Results:
- No statistically significant differences in DTDH or classical OS markers between ASD and control groups.
- No significant association found between OS biomarkers and autism severity.
- OS markers showed parallel changes but lacked group differentiation.
Conclusions:
- Plasma OS markers, including DTDH, do not significantly differ in preschool children with ASD.
- Age appears to be a critical factor influencing OS alterations in ASD.
- Further age-stratified studies are needed to clarify the role of OS in ASD.
Abstract:
Autism spectrum disorder (ASD) is a complex neurodevelopmental condition with multifactorial etiopathogenesis, where oxidative stress (OS) has been implicated as a key contributing factor. This study aimed to evaluate the plasma dynamic thiol/disulfide homeostasis (DTDH) parameters-a relatively novel OS biomarker-alongside classical OS biomarkers, including total oxidant status (TOS), total antioxidant status (TAS), oxidative stress index (OSI), glutathione, and glutathione peroxidase (GPx), in preschool children diagnosed with ASD. A total of 49 children with ASD and 31 age- and sex-matched typically developing children between the ages of 2 and 6 years were included. In addition to sociodemographic data collection, the Childhood Autism Rating Scale (CARS) and Clinical Global Impression-Severity Scale (CGI-S) were administered to assess autism severity. Blood samples were analyzed using automated spectrophotometric techniques to determine OS biomarkers. The results demonstrated that DTDH parameters and classical OS markers exhibited parallel changes; however, no statistically significant differences were detected between the ASD and control groups across all OS markers. Furthermore, no significant association was found between OS biomarkers and autism severity. Moreover, we intentionally restricted our sample to a younger age group to enable a focused examination of OS dynamics during early developmental stages. This study underscores the potential impact of age as a critical determinant in OS-related alterations in autism and highlights the need for further age-stratified investigations to elucidate the role of OS in ASD pathophysiology and its potential diagnostic relevance.
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