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Air pollution-induced epigenetic changes: disease development and a possible link with hypersensitivity pneumonitis

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ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 28, 期 40, 页码 55981-56002

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-021-16056-x

关键词

Air pollution; Particulate matter; Epigenetic modifications; Hypersensitivity pneumonitis; Epigenetic biomarkers

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  1. IMPRINT [4352]

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Air pollution poses a serious threat to health and is a major cause of various diseases. There is evidence suggesting that air pollution-induced epigenetic changes, particularly DNA methylation, play a key role in the pathogenic mechanisms. Further research is needed to fully understand how pollutants affect diseases through epigenetic modifications, such as histone modifications and miRNA expression.
Air pollution is a serious threat to our health and has become one of the major causes of many diseases including cardiovascular disease, respiratory disease, and cancer. The association between air pollution and various diseases has long been a topic of research interest. However, it remains unclear how air pollution actually impacts health by modulating several important cellular functions. Recently, some evidence has emerged about air pollution-induced epigenetic changes, which are linked with the etiology of various human diseases. Among several epigenetic modifications, DNA methylation represents the most prominent epigenetic alteration underlying the air pollution-induced pathogenic mechanism. Several other types of epigenetic changes, such as histone modifications, miRNA, and non-coding RNA expression, have also been found to have been linked with air pollution. Hypersensitivity pneumonitis (HP), one of the most prevalent forms of interstitial lung diseases (ILDs), is triggered by the inhalation of certain organic and inorganic substances. HP is characterized by inflammation in the tissues around the lungs' airways and may lead to irreversible lung scarring over time. This review, in addition to other diseases, attempts to understand whether certain pollutants influence HP development through such epigenetic modifications.

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