Urban environment during early-life and blood pressure in young children

Charline Warembourg1, Mark Nieuwenhuijsen1, Ferran Ballester2

  • 1ISGlobal, Doctor Aiguader 88, 08003 Barcelona, Spain; Universitat Pompeu Fabra (UPF), Barcelona, Spain; CIBER Epidemiología y Salud Pública (CIBERESP), Madrid, Spain.

Environment International
|October 25, 2020
PubMed

Insights

Living in a harmful urban environment, with high air pollution and noise, is linked to higher blood pressure (BP) in children. Designing healthier cities is crucial for preventing childhood hypertension and cardiovascular disease.

Area of Science:

  • Environmental Health
  • Pediatric Cardiology
  • Urban Planning

Background:

  • Urban environments present numerous exposures potentially influencing hypertension from early life.
  • A systematic evaluation of urban exposures on child blood pressure (BP) is lacking.

Purpose of the Study:

  • To systematically evaluate the impact of various urban environment exposures on child blood pressure.
  • To identify specific urban factors associated with elevated BP in children.

Main Methods:

  • Measured systolic and diastolic BP in 4,279 children (4-5 years) across a multi-center European cohort.
  • Assessed urban exposures (air pollution, built environment, noise, etc.) during pregnancy and childhood.
  • Employed linear regression models and cluster analysis to evaluate associations.

Main Results:

  • Higher child BP, particularly diastolic BP, associated with prenatal exposure to air pollution, noise, and higher temperatures.
  • Childhood exposure to air pollution and building density linked to increased BP; higher temperature and street connectivity linked to lower BP.
  • Clusters representing harmful urban environments (high pollution, traffic, noise; low green space) showed significantly higher diastolic BP in children.

Conclusions:

  • Living in a harmful urban environment negatively impacts children's BP regulation.
  • Findings underscore the need for urban design promoting healthy environments to mitigate long-term cardiovascular disease risk.
Abstract

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