Urban ambient air pollution and blood pressure in schoolchildren in Accra, Ghana

A Abosede S. Alli K Kate A. Kyeremateng J James Nimo C Carissa L. Lange N Nancy Dery P Prince Anku L Lilly Y. Adzrakor G Geofrey K. Kotoka P Philomena Oppong S Samuel Agyei-Mensah Y Youssef Oulhote A Allison F. Hughes M Majid Ezzati R Raphael E. Arku

Abstract

Abstract Ambient air pollution has been linked to elevated blood pressure (BP) in adults, but research is limited among children, particularly in sub-Saharan Africa (SSA). We investigated the potential effects of ambient fine particulate matter (PM 2.5 ), black carbon (BC), and nitrogen dioxide (NO 2 ) exposures on BP in school-aged children in Accra, Ghana’s capital and one of the fastest growing cities in SSA. We performed a cross-sectional analysis among 919 (60% girls) schoolchildren aged 7–14 years across 90 elementary schools. Following NIH guideline, we define elevated BP as age, sex, and height specific systolic and/or diastolic BP values at ≥ 90th percentile. PM 2.5 , BC, and NO 2 concentrations at homes and schools were estimated using spatiotemporal land-use regression models developed specifically for Accra using measurement data from 146 sites. Covariate-adjusted associations were estimated using multivariable mixed-effects linear and logistic regression models. The mean SBP and DBP among the children were 107.2 (9.7) and 69.1 (7.1) mmHg, respectively, with one-third of the children having elevated BP. Children’s PM 2.5 exposure at both home and school were 5–8 times the World Health Organization (WHO) annual guideline of 5 µg/m 3 , BC levels were above the maximum value in the “good practice statement for BC” (5.1 µg/m 3 ), and NO 2 concentrations exceeded the WHO annual guideline of 10 µg/m 3 by 11-fold at some locations. Overall, PM 2.5 , BC, and NO 2 were negatively associated with BP after adjustment for demographic and lifestyle covariates. For instance, a 10 unit increase in air pollution at homes was associated with a small decrease in SBP (PM 2.5 : −0.70 mmHg (95% CI −3.34, 1.94), BC: −4.61 mmHg (95% CI −9.59, 0.37), NO 2 : -0.19 mmHg (95% CI −0.60, 0.22) and DBP (PM 2.5 : −0.83 mmHg (95% CI −2.93, 1.28), BC: −4.35 mmHg (95% CI −8.19, −0.50), NO 2 : −0.14 mmHg (95% CI −0.46, 0.18)). Furthermore, home-level PM 2.5 was associated with reduced odds of having elevated BP (OR 0.75 (95% CI 0.39, 1.41)), as was BC (OR 0.35 (95% CI 0.09, 1.39)). This study showed no evidence of pro-hypertensive effect of exposure to PM 2.5 , BC, and NO 2 pollution among schoolchildren in Accra.

Article Details

Volume / Issue Vol. 1, Issue 1
Published June 04, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (14)

A

Abosede S. Alli

K

Kate A. Kyeremateng

J

James Nimo

C

Carissa L. Lange

N

Nancy Dery

P

Prince Anku

L

Lilly Y. Adzrakor

G

Geofrey K. Kotoka

P

Philomena Oppong

S

Samuel Agyei-Mensah

Y

Youssef Oulhote

A

Allison F. Hughes

M

Majid Ezzati

R

Raphael E. Arku