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大气环境与急性心肌梗死的研究进展
Research Progress of Atmospheric Environment and Acute Myocardial Infarction

DOI: 10.12677/ACM.2023.13112549, PP. 18169-18174

Keywords: 气象条件,大气污染,急性心肌梗死,综述
Meteorological Conditions
, Atmospheric Pollution, Acute Myocardial Infarction, Review

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Abstract:

随着近年来生活质量的不断提高,人们对于身心健康及生活环境的关注程度也逐渐加深。大气环境,尤其大气污染已成为人们关注的重要问题。急性心肌梗死(AMI)是最常见的急性冠心病急症,严重威胁着人类生命健康,并引起了社会各界的广泛关注。大气污染是自然界影响人类健康的重要环境因素,目前气象因素对心血管疾病特别是AMI发病的影响仍存争议,本文就大气环境与急性心肌梗死之间的关系做一综述。
With the continuous improvement of the quality of life in recent years, people’s concern for physical and mental health and the living environment has gradually deepened. The atmospheric environ-ment, especially air pollution, has become an important issue of concern. Acute myocardial infarc-tion (AMI) is the most common acute coronary emergency, which is a serious threat to human life and health, and has attracted widespread attention from all walks of life. Atmospheric pollution is an important environmental factor affecting human health in nature, and the influence of meteoro-logical factors on the development of cardiovascular diseases, especially AMI, is still controversial, this paper provides a review of the relationship between atmospheric environment and acute myo-cardial infarction.

References

[1]  De Backer, G. (2017) Epidemiology and Prevention of Cardiovascular Disease: Quo vadis? Based on the 21th ESC Geoffrey Rose Lecture on Population Sciences, ESC Congress 2016, Rome, Italy. European Journal of Preventive Car-diology, 24, 768-772.
https://doi.org/10.1177/2047487317691875
[2]  Mannoh, I., Hussien, M., Commo-dore-Mensah, Y. and Michos, E.D. (2021) Impact of Social Determinants of Health on Cardiovascular Disease Preven-tion. Current Opinion in Cardiology, 36, 572-579.
https://doi.org/10.1097/HCO.0000000000000893
[3]  Klompmaker, J.O., Hart, J.E., James, P., Sabath, M.B., Wu, X., Zanobetti, A., Dominici, F. and Laden, F. (2021) Air pollution and Cardiovascular Disease Hospitalization—Are Associations Modified by Greenness, Temperature and Humidity? Environment International, 156, Article ID: 106715.
https://doi.org/10.1016/j.envint.2021.106715
[4]  Fang, W., Li, Z., Gao, J., Meng, R., He, G., Hou, Z., Zhu, S., Zhou, M., Zhou, C., Xiao, Y., Yu, M., Huang, B., Xu, X., Lin, L., Xiao, J., Jin, D., Qin, M., Yin, P., Xu, Y., Hu, J., Liu, T., Huang, C. and Ma, W. (2023) The Joint and Interaction Effect of High Temperature and Humidity on Mortality in China. Environment International, 171, Article ID: 107669.
https://doi.org/10.1016/j.envint.2022.107669
[5]  Benziger, C.P., Roth, G.A. and Moran, A.E. (2016) The Global Burden of Disease Study and the Preventable Burden of NCD. Global Heart, 11, 393-397.
https://doi.org/10.1016/j.gheart.2016.10.024
[6]  Brinchmann, B.C., Le Ferrec, E., Podechard, N., Lagadic-Gossmann, D., Holme, J.A. and ?vrevik, J. (2019) Organic Chemicals from Diesel Exhaust Particles Affects Intracellular Calcium, Inflammation and β-Adrenoceptors in Endothelial Cells. Toxicology Letters, 302, 18-27.
https://doi.org/10.1016/j.toxlet.2018.11.009
[7]  Holme, J.A., Brinchmann, B.C., Le Ferrec, E., Lagadic-Gossmann, D. and ?vrevik, J. (2019) Combustion Particle-Induced Changes in Calcium Homeostasis: A Contributing Factor to Vascular Disease? Cardiovascular Toxicology, 19, 198-209.
https://doi.org/10.1007/s12012-019-09518-9
[8]  Brinchmann, B.C., Skuland, T., Ramb?l, M.H., Szoke, K., Brinchmann, J.E., Gutleb, A.C., Moschini, E., Kubátová, A., Kukowski, K., Le Ferrec, E., Lagadic-Gossmann, D., Schwarze, P.E., L?g, M., Refsnes, M., ?vrevik, J. and Holme, J.A. (2018) Lipophilic Components of Diesel Exhaust Particles Induce Pro-Inflammatory Responses in Human Endothelial Cells through AhR Dependent Pathway(s). Particle and Fibre Toxicology, 15, Article No. 21.
https://doi.org/10.1186/s12989-018-0257-1
[9]  Olaniyan, T., Pinault, L., Li, C., van Donkelaar, A., Meng, J., Martin, R.V., Hystad, P., Robichaud, A., Ménard, R., Tjepkema, M., Bai, L., Kwong, J.C., Lavigne, E., Burnett, R.T. and Chen, H. (2022) Ambient Air Pollution and the Risk of Acute Myocardial Infarction and Stroke: A National Cohort Study. Environmental Research, 204, Article ID: 111975.
https://doi.org/10.1016/j.envres.2021.111975
[10]  Bai, L., Shin, S., Burnett, R.T., Kwong, J.C., Hystad, P., van Donkelaar, A., Goldberg, M.S., Lavigne, E., Copes, R., Martin, R.V., Kopp, A. and Chen, H. (2019) Exposure to Am-bient Air Pollution and the Incidence of Congestive Heart Failure and Acute Myocardial Infarction: A Population-Based Study of 5.1 Million Canadian Adults Living in Ontario. Environment International, 132, Article ID: 105004.
https://doi.org/10.1016/j.envint.2019.105004
[11]  Weaver, L.K. (2009) Carbon Monoxide Poisoning. The New England Journal of Medicine, 360, 1217-1225.
https://doi.org/10.1056/NEJMcp0808891
[12]  Di Filippo, C., Luongo, M., Marfella, R., Ferraraccio, F., Lettieri, B., Capuano, A., Rossi, F. and D’Amico, M. (2010) Oxygen/Ozone Protects the Heart from Acute Myocardial Infarction through Local Increase of eNOS Activity and Endothelial Progenitor Cells Recruitment. Naunyn-Schmiedeberg’s Ar-chives of Pharmacology, 382, 287-291.
https://doi.org/10.1007/s00210-010-0545-2
[13]  Chen, R., Jiang, Y., Hu, J., Chen, H., Li, H., Meng, X., Ji, J.S., Gao, Y., Wang, W., Liu, C., Fang, W., Yan, H., Chen, J., Wang, W., Xiang, D., Su, X., Yu, B., Wang, Y., Xu, Y., Wang, L., Li, C., Chen, Y., Bell, M.L., Cohen, A.J., Ge, J., Huo, Y. and Kan, H. (2022) Hourly Air Pollutants and Acute Coronary Syndrome Onset in 1.29 Million Patients. Circulation, 145, 1749-1760.
https://doi.org/10.1161/CIRCULATIONAHA.121.057179
[14]  Motterlini, R. and Otterbein, L.E. (2010) The Therapeutic Potential of Carbon Monoxide. Nature Reviews Drug Discovery, 9, 728-743.
https://doi.org/10.1038/nrd3228
[15]  Tian, H. (2014) Advances in the Study on Endogenous Sulfur Dioxide in the Cardiovascular System. Chinese Medical Journal, 127, 3803-3807.
[16]  Buszman, P.E., Derbisz, K., Kwasiborski, P., Chrz?szcz, P., Mularska, M., Baron, D., Sobieszek, A., Mendyk, A., Skoczylas, P., Cisowski, M., Buszman, P.P. and Milewski, K. (2020) Impact of Air Pollution on Hospital Patients Admitted with ST- and Non-ST-Segment Elevation Myocardial Infarction in Heavily Polluted Cities within the European Union. Cardiology Journal, 27, 541-547.
[17]  Cai, H. and Wang, X. (2021) Effect of Sulfur Dioxide on Vascular Biology. Histology & Histopathology, 36, 505-514.
[18]  Aylin, P., Morris, S., Wakefield, J., Grossinho, A., Jarup, L. and Elliott, P. (2001) Temperature, Housing, Deprivation and Their Relationship to Excess Winter Mortality in Great Britain, 1986-1996. International Journal of Ep-idemiology, 30, 1100-1108.
https://doi.org/10.1093/ije/30.5.1100
[19]  Kawahara, J., Sano, H., Fukuzaki, H., Saito, K. and Hirouchi, H. (1989) Acute Effect of Exposure to Cold on Blood Pressure, Platelet Function and Sympathetic Nervous Activity in Humans. American Journal of Hypertension, 2, 724-726.
https://doi.org/10.1093/ajh/2.9.724
[20]  Dong, M., Yang, X., Lim, S., Cao, Z., Honek, J., Lu, H., Zhang, C., Seki, T., Hosaka, K., Wahlberg, E., Yang, J., Zhang, L., La¨nne, T., Sun, B., Li, X., et al. (2013) Cold Exposure Promotes Atherosclerotic Plaque Growth and Instability via UCP1-Dependent Lipolysis. Cell Metabolism, 18, 118-129.
https://doi.org/10.1016/j.cmet.2013.06.003
[21]  Guinea, G.V., Atienza, J.M., Fantidis, P., Rojo, F.J., Ortega, A., Torres, M., Gonzalez, P., Elices, M.L., Hayashi, K. and Elices, M. (2009) Effect of Atherosclerosis on Ther-mo-Mechanical Properties of Arterial Wall and Its Repercussion on Plaque Instability. International Journal of Cardiol-ogy, 132, 444-446.
https://doi.org/10.1016/j.ijcard.2007.08.087
[22]  Higuma, T., Yoneyama, K., Nakai, M., Kaihara, T., Sumita, Y., Watanabe, M., Doi, S., Miyamoto, Y., Yasuda, S., Ishibashi, Y., Izumo, M., Tanabe, Y., Harada, T., Ogawa, H. and Akashi, Y.J. (2021) Effects of Temperature and Humidity on Acute Myocardial Infarction Hospitalization in a Su-per-Aging Society. Scientific Reports, 11, Article No. 22832.
https://doi.org/10.1038/s41598-021-02369-x
[23]  Fang, W., Li, Z., Gao, J., Meng, R., He, G., Hou, Z., Zhu, S., Zhou, M., Zhou, C., Xiao, Y., Yu, M., Huang, B., Xu, X., Lin, L., Xiao, J., Jin, D., Qin, M., Yin, P., Xu, Y., Hu, J., Liu, T., Huang, C. and Ma, W. (2023) The Joint and Interaction Effect of High Temperature and Humidity on Mortality in China. Environment International, 171, 107669.
https://doi.org/10.1016/j.envint.2022.107669
[24]  Panagiotakos, D.B., et al. (2004) Climatological Variations in Daily Hospital Admissions for Acute Coronary Syndromes. International Journal of Cardiology, 94, 229-233.
https://doi.org/10.1016/j.ijcard.2003.04.050

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