Biochemical Remodeling of Purine Metabolism and Lipid Peroxidation Across Thyroid Disease Phenotypes

Background and Objectives: Purine-metabolism profiles across distinct thyroid phenotypes remain poorly characterized despite the recognized redox imbalance associated with thyroid dysfunction and autoimmune thyroiditis (AIT). We compared plasma and erythrocyte purine-metabolite profiles, derived purine ratios, and their associations with lipid peroxidation across four thyroid-disease phenotypes and healthy controls. Materials and Methods: This single-center cross-sectional study included 164 participants: hypothyroidism without AIT (n = 31), AIT with hypothyroidism (n = 30), nontoxic nodular goiter with euthyroidism (n = 42), euthyroid AIT (n = 37), and healthy controls (n = 24). Purine metabolites were assessed by direct UV spectrophotometry and expressed in relative extinction units; thiobarbituric acid-reactive substances (TBARS)-derived malondialdehyde (MDA) equivalents were measured in plasma and erythrocytes. Results: Plasma guanine and hypoxanthine were lower in AIT with hypothyroidism than in hypothyroidism without AIT and in euthyroid AIT than in nontoxic nodular goiter. Plasma X/HX and UA/HX were higher in both AIT groups than in controls. Plasma MDA was elevated in all thyroid-disease groups, whereas erythrocyte MDA was highest in hypothyroidism without AIT. Plasma UA/X correlated positively with both plasma and erythrocyte MDA, and plasma UA/HX with plasma MDA, with phenotype-dependent heterogeneity in stratified analyses. Conclusions: Thyroid phenotypes showed distinct compartment-specific purine and lipid-peroxidation patterns rather than a uniform AIT-dependent shift. Purine ratios should be interpreted as indirect, method-specific indices rather than direct measures of metabolic flux or XOR/XO/XDH activity.

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Journal
Metabolites
Published
2026-09-22
DOI
https://doi.org/10.3390/metabo16100700
Primary Topic
Thyroid Disorders and Treatments
Type
article
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article

Biochemical Remodeling of Purine Metabolism and Lipid Peroxidation Across Thyroid Disease Phenotypes

Yelena Pozdnyakova, Nazgul Omarbekova, Olga Anatolyevna Ponamareva, Ernur Bekov et al.
Metabolites
Thyroid Disorders and Treatments
article

Biochemical Remodeling of Purine Metabolism and Lipid Peroxidation Across Thyroid Disease Phenotypes

Yelena Pozdnyakova, Nazgul Omarbekova, Olga Anatolyevna Ponamareva, Ernur Bekov, Azamat Kharin, Khamida Abdikadirova, Vilen Molotov-Luchanskiy, Ryszhan Bakirova
article en

Abstract

Background and Objectives: Purine-metabolism profiles across distinct thyroid phenotypes remain poorly characterized despite the recognized redox imbalance associated with thyroid dysfunction and autoimmune thyroiditis (AIT). We compared plasma and erythrocyte purine-metabolite profiles, derived purine ratios, and their associations with lipid peroxidation across four thyroid-disease phenotypes and healthy controls. Materials and Methods: This single-center cross-sectional study included 164 participants: hypothyroidism without AIT (n = 31), AIT with hypothyroidism (n = 30), nontoxic nodular goiter with euthyroidism (n = 42), euthyroid AIT (n = 37), and healthy controls (n = 24). Purine metabolites were assessed by direct UV spectrophotometry and expressed in relative extinction units; thiobarbituric acid-reactive substances (TBARS)-derived malondialdehyde (MDA) equivalents were measured in plasma and erythrocytes. Results: Plasma guanine and hypoxanthine were lower in AIT with hypothyroidism than in hypothyroidism without AIT and in euthyroid AIT than in nontoxic nodular goiter. Plasma X/HX and UA/HX were higher in both AIT groups than in controls. Plasma MDA was elevated in all thyroid-disease groups, whereas erythrocyte MDA was highest in hypothyroidism without AIT. Plasma UA/X correlated positively with both plasma and erythrocyte MDA, and plasma UA/HX with plasma MDA, with phenotype-dependent heterogeneity in stratified analyses. Conclusions: Thyroid phenotypes showed distinct compartment-specific purine and lipid-peroxidation patterns rather than a uniform AIT-dependent shift. Purine ratios should be interpreted as indirect, method-specific indices rather than direct measures of metabolic flux or XOR/XO/XDH activity.

MetabolitesVol. 16(10)
Karaganda Medical University (KZ)
Openalex Percentile: Top 10%
Thyroid Disorders and Treatments
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