1.Traffic-related air pollution and allergic rhinitis.
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2018;32(2):153-156
Exposure to traffic-related air pollutants(TRAP)has been implicated in airway allergic diseases.Recent findings include epidemiologic and mechanistic studies that shed new light on the impact of TRAP on allergic rhinitis(AR)and the biology underlying this impact.These studies have found that oxidative stress induced by TRAP could affect the axis of epithelial cell-dendritic cell-T cell towards a T-helper 2 immune response,which is the major mechanism between TRAP and AR.Further,epigenetics and microRNA might be involved in this process.Our review will summarize the most recent findings in each of these areas.
Air Pollutants
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toxicity
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Air Pollution
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Humans
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Oxidative Stress
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Rhinitis, Allergic
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etiology
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Vehicle Emissions
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toxicity
3.Impact of fine particles in ambient air on lung cancer.
Gerard HOEK ; Ole RAASCHOU-NIELSEN
Chinese Journal of Cancer 2014;33(4):197-203
Recently, the International Agency for Research on Cancer (IARC) has classified outdoor air pollution and the particulate matter component of outdoor air pollution as class I carcinogen. Air pollution is consistently associated with lung cancer in epidemiologic and experimental studies. The IARC assessment is specifically designed as hazard identification, and it does not quantify the magnitude of the cancer risk. This article addresses the magnitude of the lung cancer risk in the population due to ambient air pollution exposure.
Air Pollutants
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toxicity
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Air Pollution
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adverse effects
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Carcinogens, Environmental
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toxicity
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Humans
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Lung Neoplasms
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etiology
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Particulate Matter
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toxicity
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Risk Factors
4.A bird's eye view of the air pollution-cancer link in China.
Yu-Bei HUANG ; Feng-Ju SONG ; Qun LIU ; Wei-Qin LI ; Wei ZHANG ; Ke-Xin CHEN
Chinese Journal of Cancer 2014;33(4):176-188
Air pollution in China comes from multiple sources, including coal consumption, construction and industrial dust, and vehicle exhaust. Coal consumption in particular directly determines the emissions of three major air pollutants: dust, sulfur dioxide (SO(2)), and nitrogen oxide (NOx). The rapidly increasing number of civilian vehicles is expected to bring NOx emission to a very high level. Contrary to expectations, however, existing data show that the concentrations of major pollutants [particulate matter-10 (PM10), SO(2), and nitrogen dioxide (NO(2))] in several large Chinese cities have declined during the past decades, though they still exceed the national standards of ambient air quality. Archived data from China does not fully support that the concentrations of pollutants directly depend on local emissions, but this is likely due to inaccurate measurement of pollutants. Analyses on the cancer registry data show that cancer burden related to air pollution is on the rise in China and will likely increase further, but there is a lack of data to accurately predict the cancer burden. Past experience from other countries has sounded alarm of the link between air pollution and cancer. The quantitative association requires dedicated research as well as establishment of needed monitoring infrastructures and cancer registries. The air pollution-cancer link is a serious public health issue that needs urgent investigation.
Air Pollutants
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toxicity
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Air Pollution
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adverse effects
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Carcinogens, Environmental
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toxicity
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China
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Coal
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Humans
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Neoplasms
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etiology
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Nitrogen Dioxide
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toxicity
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Particulate Matter
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toxicity
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Sulfur Dioxide
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toxicity
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Vehicle Emissions
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toxicity
5.Progress of research on the association between air pollution and prevalence of major cancers.
Z X YANG ; H M ZENG ; R S ZHENG ; C F XIA ; S W ZHANG ; W Q CHEN
Chinese Journal of Epidemiology 2018;39(4):532-535
Being an undisputed risk factor of cancer, air pollution is posing a huge threat to the health on human beings. In this article, we introduced the composition of air pollution, and the standards on air quality which was set by both World Health Organization and the Chinese government. We also summarized the most recent research findings on the association between air pollution and the risk of lung, breast, bladder and other major cancers.
Air Pollutants/toxicity*
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Air Pollution/adverse effects*
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Humans
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Neoplasms/epidemiology*
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Prevalence
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Research/trends*
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Risk Factors
6.Interaction between ambient particles and ozone and its effect on daily mortality.
Guo-Hai CHEN ; Gui-Xiang SONG ; Li-Li JIANG ; Yun-Hui ZHANG ; Nai-Qing ZHAO ; Bing-Heng CHEN ; Hai-Dong KAN
Biomedical and Environmental Sciences 2007;20(6):502-505
OBJECTIVETo examine the effect of particulate matter (PM) less than 10 microns in diameter (PM10) and ozone (O3) on daily mortality in Shanghai, China.
METHODSA generalized additive model with penalized spline function was used to observe the acute effect of PM10 and O3 on daily mortality.
RESULTSHigher PM10 significantly increased the effect of O3 on total mortality, and O3 also increased the effect of PM10 although the estimated increment was statistically insignificant.
CONCLUSIONOur findings provide further evidence for the effect of PM10 and O3 on daily mortality.
Air Pollutants ; toxicity ; China ; epidemiology ; Humans ; Mortality ; Ozone ; toxicity ; Urban Population
7.Short-term effects of air pollution on mortality in a heavily polluted Chinese city.
Zong Shuang WANG ; Ren Jie CHEN ; Ji Rao WU ; Hai Dong KAN ; Gang WU ; Xue Fang WU
Biomedical and Environmental Sciences 2013;26(8):671-674
Air Pollutants
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toxicity
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China
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epidemiology
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Cities
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Humans
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Mortality
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Particulate Matter
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toxicity
8.Advances on the toxicology and molecular mechanisms of different components of ambient fine particulate matter.
Ren Zhen PENG ; Zhou Zhou LI ; Yan Yi XU
Chinese Journal of Preventive Medicine 2022;56(5):645-651
Ambient fine particulate matters (PM2.5) refer to particulate matters with an aerodynamic diameter less than or equal to 2.5 μm. PM2.5 enter the body through the target organ-lung, and can induce a variety of adverse health effects (such as cardiovascular diseases, diabetes, respiratory diseases, neurodegenerative diseases and adverse birth outcomes). PM2.5 are known to have complex compositions (including water-soluble/-insoluble components and biological components), diverse sources and capacity of secondary transformation. Numerous epidemiological and toxicological studies indicated that different components of PM2.5 may induce adverse health effects through different biological mechanisms. In adddition, co-exposure of different components and their interaction should also be considered. Thus here we have systematically reviewed studies in recent years about the toxicological effects and underlying mechanisms of different components of ambient fine particulate matters, including inflammatory response, oxidative stress, endoplasmic reticulum stress, activation of the NF-κB signaling pathway and so on. The information may give some insights into the prevention and treatment of adverse health effects caused by exposure to different components of PM2.5.
Air Pollutants/toxicity*
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Cardiovascular Diseases/chemically induced*
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Humans
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Lung
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Oxidative Stress
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Particulate Matter/toxicity*
9.Study on the genotoxicity of exhausts of diesel engine with ethanol-diesel blending fuel.
Ke-ming LIU ; Chun-hua WANG ; Lei ZHOU ; Ming-yue ZHANG ; Chong-lin SONG ; Guo-liang FAN ; Peng LIU
Chinese Journal of Industrial Hygiene and Occupational Diseases 2005;23(1):42-44
OBJECTIVETo study the genotoxicity of components of diesel engine exhausts with ethanol-diesel blending fuel. To provide scientific arguments to find more economical and less polluted fuels.
METHODSAmes test, comet assay and GC-MS technique were used to test the genotoxicity and 16 kinds of PAHs on diesel engine exhausts with different proportions of ethanol (E0, E5, E10, E20).
RESULTSBoth Ames test and comet assay were positive. It shows that diesel engine exhausts can lead to mutation and DNA damage, especially in pure diesel oil. But the content of 16 kinds of PAHs and DNA damage level decreased in exhausts of E5. With the increase of ethanol proportion in diesel oil, the content of 16 kinds of PAHs and DNA damage level increased.
CONCLUSIONCompared with pure diesel oil and high proportion of ethanol fuel, E5 can reduce the genotoxicity and the brake specific exhausts of PAHs.
Air Pollutants ; toxicity ; Air Pollution ; Carbon Monoxide ; Comet Assay ; DNA Damage ; Ethanol ; toxicity ; Gasoline ; toxicity ; Mutagenicity Tests ; Particulate Matter ; Vehicle Emissions ; toxicity
10.The International Agency for Research on Cancer (IARC) evaluation of the carcinogenicity of outdoor air pollution: focus on China.
Dana LOOMIS ; Wei HUANG ; Guosheng CHEN
Chinese Journal of Cancer 2014;33(4):189-196
The International Agency for Research on Cancer (IARC) has classified outdoor air pollution and the particulate matter (PM) in outdoor air pollution as carcinogenic to humans, as based on sufficient evidence of carcinogenicity in humans and experimental animals and strong support by mechanistic studies. The data with important contributions to the evaluation are reviewed, highlighting the data with particular relevance to China, and implications of the evaluation with respect to China are discussed. The air pollution levels in Chinese cities are among the highest observed in the world today and frequently exceed health-based national and international guidelines. Data from high-quality epidemiologic studies in Asia, Europe, and North America consistently show positive associations between lung cancer and PM exposure and other indicators of air pollution, which persist after adjustment for important lung cancer risk factors, such as tobacco smoking. Epidemiologic data from China are limited but nevertheless indicate an increased risk of lung cancer associated with several air pollutants. Excess cancer risk is also observed in experimental animals exposed to polluted outdoor air or extracted PM. The exposure of several species to outdoor air pollution is associated with markers of genetic damage that have been linked to increased cancer risk in humans. Numerous studies from China, especially genetic biomarker studies in exposed populations, support that the polluted air in China is genotoxic and carcinogenic to humans. The evaluation by IARC indicates both the need for further research into the cancer risks associated with exposure to air pollution in China and the urgent need to act to reduce exposure to the population.
Air Pollutants
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toxicity
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Air Pollution
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adverse effects
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Animals
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Asia
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Carcinogens, Environmental
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toxicity
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China
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Environmental Exposure
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Humans
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International Agencies
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Lung Neoplasms
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etiology
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Neoplasms
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etiology
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Particulate Matter
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toxicity
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Risk Factors