Environmental Pollution and Related Redox Pathways Contributing to Retinal Diseases

Environmental pollution, a detrimental consequence of industrialization and globalization, is increasingly recognized as a potential risk factor for a wide range of human diseases, including retinal disorders. The retina is particularly vulnerable to environmental stressors, including particulate matter, nitrogen oxides, carbon monoxide, traffic-related noise, and extreme environmental conditions such as elevated temperatures. Epidemiological and experimental evidence suggests that these exposures may contribute to the development and progression of retinal diseases through mechanisms involving oxidative stress, chronic inflammation, immune dysregulation, and vascular dysfunction. These processes may ultimately contribute to retinal vasculopathies and degenerative disorders. Consequently, the pathophysiological mechanisms linking environmental exposures to retinal injury have received increasing attention in recent years. This review provides a disease-centered perspective on the relationship between environmental pollution and retinal diseases, integrating epidemiological evidence with experimental findings across specific retinal disorders. Among the environmental pollutants investigated to date, fine particulate matter (PM2.5) and nitrogen dioxide (NO2) have the most consistent epidemiological evidence for adverse effects on retinal health, particularly in relation to age-related macular degeneration (AMD). The review also discusses the methodological limitations and heterogeneity of the available evidence, as well as current knowledge gaps and future research perspectives.

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Publication Details

Journal
Antioxidants
Published
2026-10-01
DOI
https://doi.org/10.3390/antiox15101258
Primary Topic
Air Quality and Health Impacts
Type
article
Field-Weighted Citation Impact
0.00
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article

Environmental Pollution and Related Redox Pathways Contributing to Retinal Diseases

Felix Mathias Wagner, Qi Tang, Adrian Gericke, Elsa Wilma Böhm et al.
Antioxidants
Air Quality and Health Impacts
article

Environmental Pollution and Related Redox Pathways Contributing to Retinal Diseases

Felix Mathias Wagner, Qi Tang, Adrian Gericke, Elsa Wilma Böhm, Liyu Zhang
article en

Abstract

Environmental pollution, a detrimental consequence of industrialization and globalization, is increasingly recognized as a potential risk factor for a wide range of human diseases, including retinal disorders. The retina is particularly vulnerable to environmental stressors, including particulate matter, nitrogen oxides, carbon monoxide, traffic-related noise, and extreme environmental conditions such as elevated temperatures. Epidemiological and experimental evidence suggests that these exposures may contribute to the development and progression of retinal diseases through mechanisms involving oxidative stress, chronic inflammation, immune dysregulation, and vascular dysfunction. These processes may ultimately contribute to retinal vasculopathies and degenerative disorders. Consequently, the pathophysiological mechanisms linking environmental exposures to retinal injury have received increasing attention in recent years. This review provides a disease-centered perspective on the relationship between environmental pollution and retinal diseases, integrating epidemiological evidence with experimental findings across specific retinal disorders. Among the environmental pollutants investigated to date, fine particulate matter (PM2.5) and nitrogen dioxide (NO2) have the most consistent epidemiological evidence for adverse effects on retinal health, particularly in relation to age-related macular degeneration (AMD). The review also discusses the methodological limitations and heterogeneity of the available evidence, as well as current knowledge gaps and future research perspectives.

AntioxidantsVol. 15(10)
Johannes Gutenberg University Mainz (DE), University Medical Center of the Johannes Gutenberg University Mainz (DE)
Sustainable cities and communities
Openalex Percentile: Top 12%
Air Quality and Health Impacts
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