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Noémie Letellier

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Open access Sep 2026

Short-Term Effect of Air Pollutants on Sudden Unexpected Death in Infancy: A Case-Crossover Study Based on the French National Registry.

BACKGROUND Sudden unexpected death in infancy (SUDI) remains poorly understood, and the potential contribution of air pollution exposure is largely unexplored. Given its known impact on infant health, air pollution may influence the risk of SUDI, particularly through short-term effects. OBJECTIVES We aimed to evaluate the short-term effect of exposure to ambient air pollutants on SUDI in France. METHODS Using data from the French national SUDI registry (2015-2022) and modelled air pollution data, we assigned daily concentrations of particulate matter (PM10 and PM2.5, μg/m3), nitrogen dioxide (NO2, μg/m3) and ozone (O3, μg/m3) at each infant's residence. We conducted a time-stratified case-crossover analysis comparing single- and multi-pollutant exposure on the day of death with matched control days, considering lagged effects up to 6 days. Odds ratios (ORs) and 95% confidence intervals (CIs) were estimated using conditional logistic regression, adjusted for public holiday, influenza-like syndrome and daily mean temperature. We assessed the potential effect of several effect modifiers, such as biological sex, age at death, season, urban or rural residence, social deprivation and sleeping position at discovery. RESULTS A total of 1078 SUDI cases were included. Exposure to PM was consistently associated with higher odds of SUDI, with a lag effect of 3 to 5 days before death and during the last week of life. NO2 exposure presented a trend of association. Higher effects were observed for PM and NO2 with cumulative exposure, especially for PM and consistent with the multi-pollutant model. We observed seasonal heterogeneity, with higher ORs in the spring for PM and O3. CONCLUSIONS Our findings support a plausible short-term trigger effect of air pollution on SUDI. These results highlight the need to integrate environmental determinants, particularly for NO2 and PM, into SUDI prevention strategies.

Emmanuel Bourdet, N. Letellier, T. Benmarhnia et al. · 0 citations
Review Aug 2026

Ambient air pollution exposure and cognitive aging; mediators and possible pathways: a systematic review on the epidemiological studies.

This systematic review investigates the mediating factors in the relationship between ambient air pollution exposure and cognitive aging. We identified 16 studies examining 72 unique exposure-mediator-outcome associations for six pollutants (PM2.5, PM10, NO2, NOX, black carbon, and PM1 components). The most studied pollutant was PM2.5 (65% of analyses). Cognitive outcomes included memory, cognitive processing speed, and clinically diagnosed conditions such as dementia incidence. Potential mediators spanned mental health outcomes (depression, anxiety, stress), lung function (FEV1, FVC, PEF), vascular diseases (stroke, hypertension), inflammation (CRP), metabolic factors (type 2 diabetes), sleep, and neuroanatomical changes. The quality of mediation analysis reporting was generally good, but most studies had some risk of bias, particularly in outcome assessment and confounding adjustment. Cardio and Cerebro-vascular diseases emerged as a potential key mediator. Mental health outcomes, sleep, and lung function also showed mediating potential, but further research is needed to confirm these findings. This review highlights the need for rigorous causal mediation analyses and standardized reporting to better understand the complex pathways linking air pollution to cognitive aging, in order to identify targeted preventive measures to reduce the negative impact of ambient air pollution on cognitive health.

M. Z. Sakhvidi, E. Burte, A. Mehrparvar et al. · 0 citations

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