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Seasonal summer stress affects systemic redox homeostasis

A longitudinal marker analysis in healthy adults

Datos Bibliográficos

ID22073154
AutoresHong Zhou (0000-0001-8122-7300, Center of Hubei Cooperative Innovation for Emissions Trading System), Jiachen Dai (Center of Hubei Cooperative Innovation for Emissions Trading System), Yuemei Zhang (0000-0003-1574-2931, Center of Hubei Cooperative Innovation for Emissions Trading System), Wenwen Tang (Center of Hubei Cooperative Innovation for Emissions Trading System), Yingying Ren (0009-0002-0198-2774, Center of Hubei Cooperative Innovation for Emissions Trading System), Xinming Zhang (0000-0002-8136-6834, Center of Hubei Cooperative Innovation for Emissions Trading System), George H Lorimer (University of Maryland, College Park), Hasan Bayram (0000-0002-5236-766X, Pulmonary Associates), Reza A Ghilad (North Carolina State University), Junqiang Xu (0009-0005-0350-4794, Hubei Provincial Center for Disease Control and Prevention), Fanghua Mei (Hubei Provincial Center for Disease Control and Prevention), Jun Wang (0000-0003-4485-7201, Hubei University of Technology), Yi-Xiang Wang (0000-0001-5697-0717, Center of Hubei Cooperative Innovation for Emissions Trading System, autor de correspondencia)
Año2026
Volumen14
Páginas1778888-1778888
Fecha de publicación2026-05-22
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaFrontiers in Public Health (JOURNAL)
Identificadores de la revistaISSN: 2296-2565 • E-ISSN: 2296-2565
EditorialFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fpubh.2026.1778888
PMID42254610
OpenAlexW7162133044
IdiomaEN
Referencias citadas37

Introduction As global climate change and urbanization accelerate, summer heat waves are becoming more frequent and intense, posing an increasing threat to human health. However, previous studies have predominantly focused on the impact of summer high temperatures on people with pre-existing diseases, with few reports investigating their effects on healthy individuals. Redox balance is a core foundation of human health and is closely linked to changes in ambient temperature. Methods The present study enrolled 330 healthy volunteers from four cities in Hubei Province, China. Fasting serum samples were collected during spring (mild temperatures) and summer (high temperatures), and the levels of six redox markers were measured and analyzed: nitrite (NO 2 − ), nitrate (NO 3 − ), oxidized glutathione (GSSG), malondialdehyde (MDA), and total antioxidant capacity. Results The results revealed that under natural summer stress , systemic redox homeostasis in healthy individuals is significantly perturbed, characterized by reduced nitric oxide bioavailability, elevated lipid peroxidation, and enhanced serum antioxidant activity. Notably, MDA was the most sensitive biomarker in response to natural summer stress, with minimal interference from age or sex, suggesting its potential as a reliable biomarker for oxidative damage induced by natural summer stress in healthy individuals. Discussion Furthermore, significant methodological biases may arise if the seasonal variations in serum MDA levels are not taken into account when researching in this area. These findings provide a novel direction for investigating the impacts of high summer temperatures on health and may lay the foundation for guiding public health practices

Antioxidant · Biomarker · Glutathione · Malondialdehyde · Nitric oxide · Nitrite · Oxidative stress · Redox · Circadian rhythm and melatonin · Climate Change and Health Impacts · Thermoregulation and physiological responses

  • Antioxidant activity applying an improved ABTS radical cation decolorization assay

    Open Access•Roberta Re, N Pellegrini et al.•Free Radical Biology and Medicine•1999

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