Long-term exposure to ambient air pollution and an increased risk of hyperuricemia

Abstract Objectives Evidence suggests that ambient air pollution contributes to metabolic dysregulation, including hyperuricemia. However, previous studies were limited to specific groups or regions with relatively high air pollutant concentrations. This study examined the association between long-term exposure to ambient air pollutants and hyperuricemia in a general population exposed to relatively low pollution concentrations. Method This cross-sectional study analyzed 20,117 adults who underwent health screenings in the Republic of Korea (2015–2019). Annual mean concentrations of PM 2.5 , PM 10 , NO 2 , SO 2 , and CO were estimated at residential addresses using the Community Multiscale Air Quality model. Hyperuricemia was defined as serum uric acid level > 7.0 mg/dL (males) or > 6.0 mg/dL (females). Multivariable logistic regression estimated odds ratios (ORs) per interquartile range (IQR) increase in pollutant exposure, adjusting for confounders including estimated glomerular filtration rate. Results Among 20,117 participants, 3,078 (15.3%) had hyperuricemia. All five pollutants were significantly associated with hyperuricemia. The ORs (95% CIs) per IQR increase were 1.06 (1.01–1.10) for PM 2.5 , 1.15 (1.08–1.21) for PM 10 , 1.07 (1.00–1.14) for NO 2 , 1.13 (1.07–1.19) for SO 2 , and 1.06 (1.01–1.11) for CO. Associations were stronger among current smokers, older adults, and individuals with dyslipidemia or central obesity (all P for interaction < 0.05). Conclusions Long-term exposure to air pollutants was significantly associated with hyperuricemia, independent of renal function and even at low concentrations. These findings suggest that air pollution is an important environmental risk factor for metabolic disease, emphasizing the need for stricter regulations to protect vulnerable populations. Key Points• Long-term exposure to major ambient air pollutants is significantly associated with an increased risk of hyperuricemia, even at relatively low concentrations.• The association between air pollution and hyperuricemia persists independent of renal function, suggesting a potential role in systemic metabolic dysregulation.• Vulnerable populations, including older adults, current smokers, and individuals with metabolic conditions, exhibit stronger associations between air pollution exposure and hyperuricemia.

Authors

Institutions

Publication Details

Journal
Clinical Rheumatology
Published
2026-09-12
DOI
https://doi.org/10.1007/s10067-026-08398-z
Primary Topic
Gout, Hyperuricemia, Uric Acid
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Long-term exposure to ambient air pollution and an increased risk of hyperuricemia

S Cho, Jin‐Ho Park, Yoon-Hee Kang, Hyun Jin Kim et al.
Clinical Rheumatology
Gout, Hyperuricemia, Uric Acid
article

Long-term exposure to ambient air pollution and an increased risk of hyperuricemia

S Cho, Jin‐Ho Park, Yoon-Hee Kang, Hyun Jin Kim, Jae Moon Yun, Soontae Kim
article en

Abstract

Abstract Objectives Evidence suggests that ambient air pollution contributes to metabolic dysregulation, including hyperuricemia. However, previous studies were limited to specific groups or regions with relatively high air pollutant concentrations. This study examined the association between long-term exposure to ambient air pollutants and hyperuricemia in a general population exposed to relatively low pollution concentrations. Method This cross-sectional study analyzed 20,117 adults who underwent health screenings in the Republic of Korea (2015–2019). Annual mean concentrations of PM 2.5 , PM 10 , NO 2 , SO 2 , and CO were estimated at residential addresses using the Community Multiscale Air Quality model. Hyperuricemia was defined as serum uric acid level > 7.0 mg/dL (males) or > 6.0 mg/dL (females). Multivariable logistic regression estimated odds ratios (ORs) per interquartile range (IQR) increase in pollutant exposure, adjusting for confounders including estimated glomerular filtration rate. Results Among 20,117 participants, 3,078 (15.3%) had hyperuricemia. All five pollutants were significantly associated with hyperuricemia. The ORs (95% CIs) per IQR increase were 1.06 (1.01–1.10) for PM 2.5 , 1.15 (1.08–1.21) for PM 10 , 1.07 (1.00–1.14) for NO 2 , 1.13 (1.07–1.19) for SO 2 , and 1.06 (1.01–1.11) for CO. Associations were stronger among current smokers, older adults, and individuals with dyslipidemia or central obesity (all P for interaction < 0.05). Conclusions Long-term exposure to air pollutants was significantly associated with hyperuricemia, independent of renal function and even at low concentrations. These findings suggest that air pollution is an important environmental risk factor for metabolic disease, emphasizing the need for stricter regulations to protect vulnerable populations. Key Points• Long-term exposure to major ambient air pollutants is significantly associated with an increased risk of hyperuricemia, even at relatively low concentrations.• The association between air pollution and hyperuricemia persists independent of renal function, suggesting a potential role in systemic metabolic dysregulation.• Vulnerable populations, including older adults, current smokers, and individuals with metabolic conditions, exhibit stronger associations between air pollution exposure and hyperuricemia.

Clinical Rheumatology
Seoul National University (KR), New Generation University College (ET), Seoul National University Hospital (KR), National Cancer Center (KR), National University College (PR), Ajou University (KR)
Seoul National University Hospital
Good health and well-being
Openalex Percentile: Top 11%
Gout, Hyperuricemia, Uric Acid
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.