BMC Endocrine Disorders· 2026Q1
Serum melatonin levels and their relationship with inflammation and oxidative stress in patients with diabetic nephropathy: a cross-sectional case–control study
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- 2026year
Short summary
Serum melatonin was significantly lower in T2DM patients (22.00 ± 15.56 ng/L) compared to controls (42.88 ± 29.61 ng/L), correlating with reduced total antioxidant status (TAS, ρ = 0.83) and total oxidant status (TOS, ρ = 0.75), suggesting a coupled deficit in antioxidant defense. However, melatonin did not independently distinguish diabetic nephropathy (DN) from non-DN patients, with renal function markers and CRP being stronger correlates of DN.
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Key points
- Serum melatonin was significantly lower in T2DM patients (22.00 ± 15.56 ng/L) versus controls (42.88 ± 29.61 ng/L, p < 0.001).
- Lower melatonin correlated strongly with reduced TAS (ρ = 0.83) and TOS (ρ = 0.75) in T2DM patients.
- Within the diabetic cohort, melatonin was paradoxically marginally higher in the DN group (p = 0.043), while urea, creatinine, and CRP were markedly higher.
- Renal function markers (urea, AUC 0.805; eGFR, AUC 0.737) and CRP provided stronger discrimination for DN than melatonin (AUC 0.666).
AI-generated from the title and abstract; the full text is not read.
Abstract
Diabetic nephropathy (DN), a major microvascular complication of type 2 diabetes mellitus (T2DM), is driven by oxidative stress and chronic inflammation. Melatonin, an endogenous indoleamine with potent antioxidant and anti-inflammatory properties, has been implicated in diabetic complications but its relationship with systemic inflammation and oxidative balance in DN remains incompletely characterised. This study aimed to evaluate serum melatonin levels in T2DM patients with and without nephropathy compared with healthy controls, and to assess associations with inflammatory indices (C-reactive protein, CRP; neutrophil-to-lymphocyte ratio, NLR) and total antioxidant/oxidant status (total antioxidant status, TAS; total oxidant status, TOS). This cross-sectional case–control study included 83 participants: 59 patients with T2DM (29 with DN and 30 without DN) and 24 healthy controls. Serum melatonin was measured by a validated enzyme-linked immunosorbent assay (ELISA). TAS and TOS were measured by an automated colorimetric method (Erel method). Inflammatory indices and renal-function markers were measured by standard methods. Receiver operating characteristic (ROC) curve analysis and multivariate logistic regression were used to evaluate predictive performance for DN. Serum melatonin was significantly lower in T2DM patients than controls (22.00 ± 15.56 vs. 42.88 ± 29.61 ng/L, p < 0.001), accompanied by reduced TAS (4.05 ± 3.94 vs. 7.87 ± 6.68 mmol/L, p < 0.001) and TOS (2.33 ± 2.43 vs. 8.50 ± 11.77 µmol/L, p = 0.002), and markedly elevated CRP ( p < 0.001). Within the diabetic cohort, neither TAS nor TOS differed significantly between DN and non-DN patients; serum melatonin was paradoxically marginally higher in the DN group ( p = 0.043), in the opposite direction to the conventionally hypothesised pattern. In contrast, DN patients had markedly higher urea and creatinine, lower albumin, and higher CRP ( p = 0.008). Melatonin correlated strongly and positively with TAS (ρ = 0.83) and TOS (ρ = 0.75). Urea provided the strongest discrimination for DN among the markers assessed (area under the curve, AUC, 0.805, 95% confidence interval, CI, 0.696–0.897), followed by estimated glomerular filtration rate (eGFR) (AUC 0.737); melatonin discriminated DN only modestly (AUC 0.666). Serum melatonin and total antioxidant capacity are concurrently reduced in T2DM, reflecting a coupled deficit of antioxidant defence. However, melatonin and TAS/TOS did not independently distinguish DN from non-DN diabetic patients; conventional renal-function markers and CRP were the dominant correlates of nephropathy. Melatonin appears to mark the global oxidative–metabolic burden of T2DM rather than nephropathy specifically.
The authors' abstract, as published at the source. BMC Endocrine Disorders, 2026 · DOI ↗
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Field: Endocrine and Autonomic Systems
Endocrine and Autonomic SystemsNeuroscience