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The association between environmental greenness and the risk of food allergy: A population-based study in Melbourne, Australia

Authors :
Genuneit, J
Peters, RL
Sutherland, D
Dharmage, SC
Lowe, AJ
Perrett, KP
Tang, MLK
Lycett, K
Knibbs, LD
Koplin, JJ
Mavoa, S
Genuneit, J
Peters, RL
Sutherland, D
Dharmage, SC
Lowe, AJ
Perrett, KP
Tang, MLK
Lycett, K
Knibbs, LD
Koplin, JJ
Mavoa, S
Publication Year :
2022

Abstract

BACKGROUND: While exposure to environmental greenness in childhood has shown mixed associations with the development of allergic disease, the relationship with food allergy has not been explored. We investigated the association between exposure to environmental greenness and challenge-confirmed food allergy in a large population-based cohort. METHODS: The HealthNuts study recruited 5276 12-month-old infants in Melbourne, Australia, who underwent skin prick testing to peanut, egg, and sesame; infants with a detectable wheal underwent food challenges to determine food allergy status. Environmental greenness was estimated using the normalized difference vegetation index (NDVI) for five buffer zones around the infant's home address: at the home, 100 m, 500 m, 800 m, and 1600 m radial distances. Environmental greenness was categorized into 3 tertiles and mixed effects logistic regression models quantified the association between greenness and the risk of food allergy, adjusting for confounding and accounting for clustering at the neighborhood level. RESULTS: NDVI data were available for n = 5097. For most buffer zones, medium and high greenness, compared to low greenness, was associated with an increased risk of peanut allergy (eg, 100 m tertile 2 aOR 1.89 95% CI 1.22-2.95, tertile 3 aOR 1.78 95% CI 1.13-2.82). For egg allergy, the effect sizes were smaller (100 m tertile 2 aOR 1.52 95% CI 1.16-1.97, tertile 3 aOR 1.38 95% CI 1.05-1.82). Socioeconomic status (SES) modified the association between greenness and peanut allergy, but not egg allergy; associations were apparent in the low SES group but not in the high SES group (p for interaction 0.08 at 100 m). Air pollution (PM2.5) also modified the associations between environmental greenness and food allergy, with associations present in high air pollution areas but not low (p for interaction at 100 m 0.05 for peanut and 0.06 for egg allergy.) CONCLUSION: Increased exposure to environmental greenness in the first year of

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1397538155
Document Type :
Electronic Resource