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Updated: May 17, 2026

Evaluation of Oxidative Stress in Biological Samples Using the Thiobarbituric Acid Reactive Substances Assay
Published on: May 12, 2020
Urinary conjugated α-tocopheronolactone--a biomarker of oxidative stress in children with type 1 diabetes
Gayatri Sharma1, David P Muller, Stephen M O'Riordan
1Biochemistry Research Group, Clinical & Molecular Genetics Unit, University College London Institute of Child Health, London WC1N 1EH, UK.
Insights
Researchers developed a new method to measure vitamin E metabolites in urine. Increased levels of alpha-tocopheronolactone (alpha-TL) conjugates in children with type 1 diabetes suggest it could be a biomarker for oxidative stress.
Area of Science:
- Biochemistry
- Pediatric Endocrinology
- Clinical Chemistry
Background:
- Oxidative stress is linked to diabetes mellitus onset and progression.
- Biomarkers for oxidative stress are needed to assess glycemic control's impact on macrovascular disease in diabetes.
Purpose of the Study:
- To develop and validate a novel method for measuring urinary vitamin E (alpha-tocopherol) metabolites.
- To investigate alpha-tocopheronolactone (alpha-TL) as a potential biomarker of oxidative stress in children with type 1 diabetes.
Main Methods:
- Developed a novel liquid chromatography-tandem mass spectrometry method.
- Measured urinary concentrations of alpha-tocopherol's glucuronidated and sulfated metabolites.
- Studied 32 children with type 1 diabetes and age-matched controls.
Main Results:
- The novel method allowed direct and rapid measurement of urinary alpha-tocopherol metabolites.
- Significantly increased mean concentrations of alpha-TL glucuronidated and sulfated conjugates were observed in children with type 1 diabetes (p<0.001).
Conclusions:
- Urinary alpha-TL conjugates show promise as a biomarker for oxidative stress in diabetes.
- This biomarker may also be relevant for other conditions associated with oxidative stress.
Abstract:
Increased oxidative stress has been implicated in both the onset and the progression of diabetes mellitus and its complications. The development of easy to measure biomarkers of oxidative stress would, therefore, help in determining in a prospective manner the impact of glycemic control on oxidative stress and macrovascular disease in patients with diabetes. We report the development and validation of a novel method to directly measure the urinary concentrations of the conjugated metabolites of vitamin E (α-tocopherol) and investigate whether the oxidized metabolite α-tocopheronolactone (α-TL) could be used as a biomarker of oxidative stress in children with type 1 diabetes. A novel method using liquid chromatography-tandem mass spectrometry was developed and used to measure directly and rapidly the urinary concentrations of the glucuronidated and sulfated metabolites of α-tocopherol in 32 young patients with type 1 diabetes and age-matched controls. The mean concentrations of the glucuronidated and sulfated conjugates of α-TL were all highly significantly increased in the children with type 1 diabetes (p<0.001). The results suggest that the measurement of the urinary concentrations of α-TL conjugates may provide a useful biomarker of oxidative stress in diabetes and possibly in other clinical conditions in which oxidative stress has been implicated.
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