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Associations of short-term changes in air pollution with spontaneous preterm birth: A time-stratified case-crossover
Timothy D Nelin1, Nicolas P Goldstein Novick2, Joshua K Radack2
1Department of Pediatrics, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA; Division of Neonatology, Children's Hospital of Philadelphia, Philadelphia, PA; Philadelphia Regional Center for Children's Environmental Health, Philadelphia, PA; Department of Biostatistics, Epidemiology, and Informatics, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA; Center of Excellence in Environmental Toxicology, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.
Abstract:
Spontaneous preterm birth (sPTB) is a leading cause of neonatal morbidity in the United States. Genetics incompletely explains sPTB risk and environmental contributions remain poorly understood. We analyzed associations of short-term fine particulate matter (PM2.5) exposure with sPTB in two datasets: 109,735 sPTBs in Michigan (2003-2020) and 5,321 sPTBs in metropolitan Philadelphia (2008-2020). We used a time-stratified case-crossover design and daily high-resolution PM2.5 estimates to evaluate exposures in the week prior to sPTB using three complementary approaches: (1) nested daily lag terms; (2) averaged lag exposures; and (3) distributed lag non-linear models (DLNMs). To assess whether allowing flexible lag structures improved model fit, we performed likelihood ratio tests comparing models with linear lag terms to DLNMs. All models were adjusted for temperature. Across both cohorts and modeling approaches, we did not detect statistically significant associations of short-term PM2.5 exposure with sPTB, with point estimates close to the null with narrow confidence intervals. These findings suggest that, at the studied concentrations, short-term elevations in PM2.5 are unlikely to be associated with sPTB. As environmental regulatory protections evolve, pollution levels may change, underscoring the importance of continued surveillance of PM2.5-related health effects.
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