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Feasibility and results of joint ambulatory monitoring of exposure to particulate matter pollution and lung function in children in Abidjan, Cote dIvoire: a cross-sectional observational study

Por: Pajot · A. · Yapo · M. · Liousse · C. · Doumbia · M. · Gnamien · S. · Ahoua · S. · Dje · S. · Dick · F. · Fayon · M. · Yoboue · V. · Marcy · O.
Background

Children are largely exposed to air pollution in low- and middle-income countries, yet data on exposure and respiratory effects of air pollution remain limited. This study aimed to assess the feasibility and outcomes of joint ambulatory monitoring of exposure to fine particulate matter (particles with a diameter of less than 2.5 µm (PM2.5)) and spirometry in children living in Abidjan, Côte d’Ivoire.

Methods

We did a cross-sectional observational study among children aged 7–17 years. After a baseline spirometry, children were asked to wear portable PM2.5 sensors and to perform 2x3 daily flow–volume curves using a portable spirometer for 7 days. We described the proportion of acceptable measurements, per cent predicted forced expiratory volume (ppFEV1), and hourly geometric mean PM2.5 concentrations, and analysed the cumulative delayed effects of PM2.5 on ppFEV1 using distributed lag non-linear models.

Results

Of 29 children enrolled, 18 (62.1%) were female, median age 12 years, all performed spirometry with 1101 (90.4%) of 1218 expected flow-volume curves obtained. Of these, 625 (51.3%) acceptable curves were received and 313 valid, non-duplicate curves were analysed. The median ppFEV1 was 79.6% (71.5–87.4), with lower values in the morning than in the evening (p2.5 measurements, 93 689 (64.1%) were obtained; 6328 aberrant data were excluded. The median hourly PM2.5 concentrations were 164.2 (107.0–272.2) µg/m3. PM2.5 levels varied throughout the day, with pollution peaks observed in the morning. A significant decrease in ppFEV1 was observed between 0 and 2 hours post-exposure, after an IQR increase of 120.9 µg/m3 in PM2.5 exposure (β=–2.21; CI –3.74 to –0.69).

Conclusion

Ambulatory spirometry and PM2.5 measurements are feasible with portable devices in African children. High PM2.5 exposure and individual variability in lung function highlight the need for further research on the respiratory effects of air pollution in children.

Personalized lead exposure information and preventive behaviors in Ivory Coast: Insights from a pilot study

by Véronique Gille, Flore Gubert, Camille Saint-Macary, Stéphanie Dos Santos, Franck Houffoué, Hugues Kouadio, Epiphane Marahoua, Petanki Soro, Alexander van Geen

Lead (Pb) exposure is a major global health concern, particularly for young children, yet awareness of the risks is low. Pb-based paint remains a significant source of exposure in many low- and middle-income countries, despite existing regulations. We investigate whether personalized information on lead in paint can increase awareness and encourage preventive behaviors. As part of a pilot study in Abidjan, Ivory Coast, painted surfaces in pregnant women’s homes were tested using a low-cost Pb detection kit, followed by confirmatory testing with an X-ray fluorescence (XRF) device. Among the final sample of 153 women, those living in homes that tested positive for Pb were 33-35 percentage points more likely to acknowledge their exposure risk. This increased awareness led to self-reported behavioral changes among mothers of young children, including a higher likelihood of preventing children from ingesting paint chips and washing their hands more frequently. We find no impact on self-reported home-cleaning or renovation behaviors. Our findings highlight the potential of personalized information to drive behavioral change in environmental health.
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