Impact of Air Pollution and Weather on Dry Eye
Влияние загрязнения воздуха и погодных условий на синдром сухого глаза
2020-11-20
SCID: 54.1/2hfmr3a2
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air pollutiondry eyeocular surfaceparticulate matterrelative humidity
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Abstract (AI)
Air pollution has broad effects on human health involving many organ systems. The ocular surface is an excellent model with which to study the effects of air pollution on human health as it is in constant contact with the environment, and it is directly accessible, facilitating disease monitoring. Effects of air pollutants on the ocular surface typically manifest as dry eye (DE) symptoms and signs. In this review, we break down air pollution into particulate matter (organic and inorganic) and gaseous compounds and summarize the literature regarding effects of various exposures on DE. Additionally, we examine the effects of weather (relative humidity, temperature) on DE symptoms and signs. To do so, we conducted a PubMed search using key terms to summarize the existing literature on the effects of air pollution and weather on DE. While we tried to focus on the effect of specific exposures on specific aspects of DE, environmental conditions are often studied concomitantly, and thus, there are unavoidable interactions between our variables of interest. Overall, we found that air pollution and weather conditions have differential adverse effects on DE symptoms and signs. We discuss these findings and potential mitigation strategies, such as air purifiers, air humidifiers, and plants, that may be instituted as treatments at an individual level to address environmental contributors to DE.
Key Findings
1
Air pollution and weather variables, particularly relative humidity and temperature, have differential adverse effects on dry-eye symptoms and signs.
2
Air-pollution exposures, including particulate matter and gaseous compounds, typically manifest as dry-eye symptoms and clinical signs.
3
Environmental exposures are often studied together, creating unavoidable interactions that complicate attribution to individual pollutants or weather conditions.
4
Potential individual-level mitigation strategies include air purifiers, air humidifiers, and plants to reduce environmental contributions to dry eye.
5
The ocular surface is a useful model for studying air-pollution effects because it is continuously exposed to the environment and readily monitored.
Research Object
The human ocular surface affected by air pollution and weather conditions
Research Subject
Dry eye symptoms and signs, including their differential responses to particulate and gaseous pollutants, relative humidity, and temperature
Publication Details
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2020-11-20
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