AI Article Synopsis

  • - Urban greenness is important for combating urbanization's negative effects and promoting sustainability, but its link to lung cancer mortality has not been fully explored.
  • - A study involving 581,785 adults in southern China used a sophisticated statistical model to find that increased greenness is associated with lower lung cancer mortality (hazard ratio of 0.89 per IQR increase).
  • - The protective effects of urban greenness are partially due to lower levels of particulate matter, as well as its influence on temperature and physical activity, demonstrating a complex relationship that warrants further research.

Article Abstract

Urban greenness, as a vital component of the urban environment, plays a critical role in mitigating the adverse effects of rapid urbanization and supporting urban sustainability. However, the causal links between urban greenness and lung cancer mortality and its potential causal pathway remain poorly understood. Based on a prospective community-based cohort with 581,785 adult participants in southern China, we applied a doubly robust Cox proportional hazard model to estimate the causal associations between urban greenness exposure and lung cancer mortality. A general multiple mediation analysis method was utilized to further assess the potential mediating roles of various factors including particulate matter (PM, PM, and PM), temperature, physical activity, and body mass index (BMI). We observed that each interquartile range (IQR: 0.06) increment in greenness exposure was inversely associated with lung cancer mortality, with a hazard ratio (HR) of 0.89 (95 % CI: 0.83, 0.96). The relationship between greenness and lung cancer mortality might be partially mediated by particulate matter, temperature, and physical activity, yielding a total indirect effect of 0.826 (95 % CI: 0.769, 0.887) for each IQR increase in greenness exposure. Notably, the protective effect of greenness against lung cancer mortality could be achieved primarily by reducing the particulate matter concentration.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10783447PMC
http://dx.doi.org/10.1016/j.scs.2023.105079DOI Listing

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