Evidence map›Paper›PMID 42701125›Full record

ArticleEuropean journal of pediatrics2026

Association between plasma homocysteine levels and P-wave dispersion in pediatric patients with hyperhomocysteinemia.

Bahar Kulu, Onur Taşçı, Haşim Olgun, Nuriye Ece Mintaş, Sibel Burçak Şahin Uyar, Zümrüt Arslan Gülten, Cüneyt Zihni, Sibel Büyükçoban, Volkan Hancı, Nur Arslan

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Article in European journal of pediatrics, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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4 · The record

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5 · Who and what money

Authors and funding

10 authors.

Bahar KuluDepartment of Pediatric Metabolism, Health Sciences University Tepecik Training and Research Hospital, İzmir, Türkiye. bahar.kulu@hotmail.com.ORCID https://orcid.org/0000-0003-2147-9316
Onur TaşçıDepartment of Pediatric Cardiology, Health Sciences University Tepecik Training and Research Hospital, İzmir, Türkiye.
Haşim OlgunDepartment of Pediatric Cardiology, Faculty of Medicine, Muğla Sıtkı Koçman University, Muğla, Türkiye.
Nuriye Ece MintaşDepartment of Pediatric Metabolism, Muğla Training and Research Hospital, Muğla, Türkiye.
Sibel Burçak Şahin UyarDepartment of Pediatric Metabolism, İzmir City Hospital, İzmir, Türkiye.
Zümrüt Arslan GültenDepartment of Pediatric Metabolism, Şişli Hamidiye Etfal Training and Research Hospital, Istanbul, Türkiye.
Cüneyt ZihniDepartment of Pediatric Cardiology, Health Sciences University Tepecik Training and Research Hospital, İzmir, Türkiye.
Sibel BüyükçobanDepartment of Anesthesiology and Reanimation, Dokuz Eylül University Faculty of Medicine, İzmir, Türkiye.
Volkan HancıDepartment of Anesthesiology and Reanimation, Dokuz Eylül University Faculty of Medicine, İzmir, Türkiye.
Nur ArslanDepartment of Pediatric Metabolism, Dokuz Eylül University Faculty of Medicine, İzmir, Türkiye.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

Hyperhomocysteinemia has been recognized as a cardiovascular risk factor associated with endothelial dysfunction, oxidative stress, and vascular inflammation. Experimental and clinical studies suggest that elevated homocysteine levels may also influence myocardial electrophysiology and contribute to arrhythmogenesis. However, data regarding the relationship between homocysteine levels and electrocardiographic markers of atrial conduction in pediatric populations remain limited. This study aimed to evaluate the association between plasma homocysteine levels and electrocardiographic parameters, particularly P-wave dispersion, in children. This multicenter retrospective case-control study included pediatric patients evaluated in four tertiary pediatric metabolism centers between January 2023 and December 2025. A total of 47 patients with hyperhomocysteinemia (plasma total homocysteine ≥ 15 µmol/L) and 43 age- and sex-matched controls with normal homocysteine levels were included. Controls were selected from the screened population among children with available homocysteine measurements, electrocardiographic and echocardiographic evaluations, and no confirmed inherited metabolic disease or cardiac disorder. Clinical, biochemical, and electrocardiographic parameters, including maximum P-wave duration and P-wave dispersion, were retrospectively analyzed. A total of 90 participants were included, comprising 47 children with hyperhomocysteinemia and 43 healthy controls. P-wave dispersion and maximum P-wave duration were significantly higher in the hyperhomocysteinemia group compared with controls (48.96 [19.48-100.0] vs. 38.57 [10.57-71.19] ms, p < 0.001). Plasma homocysteine levels showed a moderate positive correlation with P-wave dispersion (ρ = 0.441, p < 0.001). These differences were more pronounced in children with higher homocysteine levels and in younger age groups (< 2 years and 2-14 years). In contrast, PR interval (p = 0.790) and QTc interval (p = 0.183) did not differ significantly between groups. Vitamin B12 levels were significantly lower in the hyperhomocysteinemia group (p = 0.013), while folate levels were comparable (p = 0.974). Although sodium, potassium, and magnesium levels differed significantly between groups, all values remained within normal physiological ranges.

conclusionsChildren with hyperhomocysteinemia showed increased P-wave dispersion compared with controls. These findings suggest an association between elevated homocysteine levels and altered atrial conduction parameters in children. Further prospective studies are needed to determine the clinical significance of these findings. WHAT IS KNOWN: • Hyperhomocysteinemia is associated with cardiovascular risk and endothelial dysfunction. • Elevated homocysteine levels have been linked to cardiac electrophysiological alterations in adult populations. WHAT IS NEW: • Elevated homocysteine levels are associated with increased P-wave dispersion in children, with more pronounced effects observed in younger age groups. • These findings support an association between hyperhomocysteinemia and altered atrial conduction parameters in children.

Indexed as

Arrhythmias, CardiacElectrocardiographyHomocysteineHyperhomocysteinemiaAdolescentBiomarkersCase-Control StudiesChildChild, PreschoolFemaleHumansMaleRetrospective StudiesBiomarkersHomocysteineArrhythmia riskAtrial conductionChildrenElectrocardiographyHomocysteineHyperhomocysteinemiaP-wave dispersion

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.