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Updated: Jan 8, 2026

Measuring Carbon Content in Airway Macrophages Exposed to Carbon-Containing Particulate Matters
Published on: July 12, 2024
Long-term exposure to ambient air pollution and sequential carcinogenesis in the cardia gastric: a cross-sectional
Juan Zhu1, Huanqing Tao1,2, Ning Kang3
1Department of Cancer Prevention, Zhejiang Cancer Hospital, Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences, Hangzhou, 310022, Zhejiang, China.
Background:
Cardia gastric cancer (CGC) is a distinct and increasingly prevalent malignancy, yet the role of air pollution in its sequential carcinogenesis remains unclear. The present cross-sectional study aimed to evaluate the associations between long-term exposure to ambient air pollution and the progression of precancerous cardia gastric lesions.
Methods:
A total of 99,493 participants were enrolled from the National Opportunistic Screening Program for Upper Gastrointestinal Cancer in Zhejiang Province of China from 2022 to 2023. Long-term exposure to six air pollutants including particulate matter (PM10), fine particulate matter (PM2.5), sulfur dioxide (SO2), nitrogen dioxide (NO2), ozone (O3), and carbon monoxide (CO) was assessed by using ChinaHighAirPollutants (CHAP) dataset. Cardia lesion progression was classified into five histopathological stages based on endoscopic biopsy. Ordinal logistic regression was used to examine pollutant-specific associations, restricted cubic splines (RCS) were applied to assess the potential exposure-response associations, and weighted quantile sum (WQS) regression was performed to evaluate the mixture effects.
Results:
All six pollutants were significantly associated with cardia lesion progression. The adjusted odds ratios (95% confidence intervals, 95% CI) per standard deviation increment in 5-year mean concentration were 1.21 (1.17-1.25) for PM10, 1.28 (1.23-1.32) for PM2.5, 1.17 (1.13-1.21) for SO2, 1.07 (1.03-1.10) for NO2, 1.16 (1.12-1.20) for O3, and 1.36 (1.30-1.41) for CO. RCS analyses indicated non-linear exposure-response patterns for NO2, O3, and CO. In mixture models, CO and PM2.5 were identified as the predominant contributors, with a 10% increase in combined exposure associated with a 10% (95% CI: 7-13%) higher risk of cardia lesion progression. Effect modification analysis revealed that Helicobacter pylori-positive individuals were more susceptible to pollution-related progression.
Conclusions:
Long-term exposure to air pollutants is associated with the progression of cardia gastric lesions, highlighting the importance of incorporating air quality improvement into cancer prevention strategies.
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