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.

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