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Associations between long-term fine particulate matter exposure and hospital procedures in heart failure patients
Samantha Catalano1, Joshua Moyer2, Anne Weaver2
1Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States of America.
Background:
Ambient fine particulate matter (PM2.5) contributes to global morbidity and mortality. One way to understand the health effects of PM2.5 is by examining its impact on performed hospital procedures, particularly among those with existing chronic disease. However, such studies are rare. Here, we investigated the associations between annual average PM2.5 and hospital procedures among individuals with heart failure.
Methods:
Using electronic health records from the University of North Carolina Healthcare System, we created a retrospective cohort of 15,979 heart failure patients who had at least one of 53 common (frequency > 10%) procedures. We used daily modeled PM2.5 at 1x1 km resolution to estimate the annual average PM2.5 at the time of heart failure diagnosis. We used quasi-Poisson models to estimate associations between PM2.5 and the number of performed hospital procedures over the follow-up period (12/31/2016 or date of death) while adjusting for age at heart failure diagnosis, race, sex, year of visit, and socioeconomic status.
Results:
A 1 μg/m3 increase in annual average PM2.5 was associated with increased glycosylated hemoglobin tests (10.8%; 95% confidence interval = 6.56%, 15.1%), prothrombin time tests (15.8%; 95% confidence interval = 9.07%, 22.9%), and stress tests (6.84%; 95% confidence interval = 3.65%, 10.1%). Results were stable under multiple sensitivity analyses.
Conclusions:
These results suggest that long-term PM2.5 exposure is associated with an increased need for diagnostic testing on heart failure patients. Overall, these associations give a unique lens into patient morbidity and potential drivers of healthcare costs linked to PM2.5 exposure.
Insights
Long-term exposure to fine particulate matter (PM2.5) increases the need for diagnostic tests in heart failure patients. This finding highlights potential drivers of healthcare costs associated with air pollution.
Area of Science:
- Environmental Health
- Cardiology
- Public Health
Background:
- Ambient fine particulate matter (PM2.5) is a global health concern linked to morbidity and mortality.
- Understanding PM2.5's health effects through hospital procedures, especially in chronic disease populations, is crucial but understudied.
- This study focuses on the impact of PM2.5 on hospital procedures in individuals with heart failure.
Purpose of the Study:
- To investigate the association between annual average PM2.5 exposure and hospital procedures among heart failure patients.
- To provide insights into patient morbidity and healthcare costs related to PM2.5 exposure.
Main Methods:
- A retrospective cohort of 15,979 heart failure patients was analyzed using electronic health records.
- Daily modeled PM2.5 data (1x1 km resolution) was used to estimate annual average exposure at diagnosis.
- Quasi-Poisson models adjusted for demographic and socioeconomic factors to assess PM2.5's impact on procedure frequency.
Main Results:
- A 1 μg/m3 increase in annual average PM2.5 was associated with a significant rise in specific diagnostic tests.
- Notable increases included glycosylated hemoglobin tests (10.8%), prothrombin time tests (15.8%), and stress tests (6.84%).
- Sensitivity analyses confirmed the stability of these findings.
Conclusions:
- Long-term PM2.5 exposure is linked to an increased demand for diagnostic testing in heart failure patients.
- These associations offer a novel perspective on heart failure patient morbidity.
- The findings suggest PM2.5 exposure may be a significant factor contributing to healthcare costs.
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