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http://dx.doi.org/10.15434/kssh.2020.33.3.148

The Relationship between Particulate Matter and Allergic Disease among Adolescents  

Kim, Eungyeong (Department of Nursing, Kunsan National University)
Publication Information
Abstract
Purpose: The study was performed to identify the relationship between particulate matter and allergic diseases among adolescents in South Korea. Methods: The study used the raw data from the Korean Youth Risk Behavior Web-Based Survey which was performed in 2018. The data of a total of 60,040 students were analyzed, using SPSS 21, by descriptive statistics, t-test, χ2 test, and logistic regression. Results: Allergic diseases among adolescents were showed to be significantly related to gender, age, school record, stress, BMI, insufficient sleep, depression, current drinking, current smoking, and particulate matter concentrations. Conclusion: The findings suggest that a health promotion program that considers particulate matter concentrations be developed to improve the health status of adolescents with allergic diseases.
Keywords
Adolescent; Particulate matter; Allergic diseases;
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1 Ko F, Tam W, Wong T, Lai C, Wong G, Leung TF, et al. Effects of air pollution on asthma hospitalization rates in different age groups in Hong Kong. Clinical & Experimental Allergy. 2007; 37(9):1312-1319. https://doi.org/10.1111/j.1365-2222.2007.02791.x   DOI
2 Seo SC, Kang IS, Lim SG, Choung JT, Yoo Y. Indoor air pollutants and atopic dermatitis in socioeconomically disadvantaged children. Allergy, Asthma & Respiratory Disease. 2015;3(3): 206-212. https://doi.org/10.4168/aard.2015.3.3.206   DOI
3 Lee S, Chang Y, Cho S. Allergic diseases and air pollution. Asia Pacific Allergy. 2013;3(3):145-154. https://doi.org/10.5415/apallergy.2013.3.3.145   DOI
4 Ministry of Education, Ministry of Health & Welfare, Korea Centers for Disease Control and Prevention. 14th Korea youth risk health behavior web-based survey [Internet]. Cheongju: Korea Centers for Disease Control and Prevention; 2018 [cited 2019 July 19]. Available from: http://www.kdca.go.kr/yhs/home.jsp?id=m03_02
5 Airkorea. Real-time air quality data [internet]. Incheon: Airkorea; 2018 [cited 2019 July 22]. Available from: https://www.airkorea.or.kr/web/realSearch?pMENU_NO=97
6 Jang YW, Kim JY, Kim HK, Lim SH. The correlation between fine dust (PM10, PM2.5) and the number of acute/chronic sinusitis patients. Journal of Korean Medicine Ophthalmology & Otolaryngology & Dermatology. 2018;1(3):1-11.
7 Han JY, Park HS. Prevalence of allergic diseases and its related factors in Korean adolescents - using data from the 2013 Korea youth risk behavior web-based survey. Journal of the Korean Data And Information Science Society. 2016;27(1):55-168. https://doi.org/10.7465/jkdi.2016.27.1.155   DOI
8 Kwon JA, Park EC, Lee M, Yoo KB, Park S. Does stress increase the risk of atopic dermatitis in adolescents? results of the Korea youth risk behavior web-based survey (KYRBWS-VI). PLOS One. 2013;8(8):e67890. https://doi.org/10.1371/journal.pone.0067890   DOI
9 Lee HE. The relationship between the body mass index and allergic disease of adolescents [master's thesis]. Seoul: Yonsei University; 2019. p. 1-50.
10 So ES, Yeo JY. Relationship between health status and life styles and atopic dermatitis in adolescents. Journal of Korean Academy of Child Health Nursing. 2012;8(3):143-149. https://doi.org/10.4094/jkachn.2012.18.3.143   DOI
11 Lee SM, Ahn JS, Noh CS, Lee SW. Prevalence of allergic diseases and risk factors of wheezing in Korean military personnel. Journal of Korean Medical Science. 2011;26:201-206. https://doi.org/10.3346/jkms.2011.26.2.201   DOI
12 OECD. The economic consequences of outdoor air pollution [Internet]. Seoul: Organization for Economic Co-operation and Development; 2011 [cited 2020 January 16]. Available from: https://www.oecd.org/environment/indicators-modelling-outlooks/Policy-Highlights-Economic-consequences-of-outdoor-air-pollution-web.pdf
13 Yoo SM, Kim HB, Lee SY, Kim BS, Kim JH, Yu JH, et al. Association between obesity and the prevalence of allergic diseases, atopy, and bronchial hyper responsiveness in Korean adolescents. International Archives of Allergy and Immunology. 2011;154:42-48. https://doi.org/10.1159/000319207   DOI
14 Dong G, Qian Z, Liu M, Wang D, Ren W, Fu Q, et al. Obesity enhanced respiratory health effects of ambient air pollution in Chinese children: the seven northeastern cities study. International Journal of Obesity. 2013;37(1):94. https://doi.org/10.1038/ijo.2012.125   DOI
15 Ministry of Environment. Particulate matter management for the safety and health of the public. Proceedings of the Korean Environmental Health Society Conference. 2017;1:9-26.
16 Korea Local Information Research & Development Institute. Health-threatening, silent and uninvited guest, particulate matter. Local Information Magazine. 2016;98:114-117.
17 Teng B, Zhang X, Yi C, Zhang Y, Ye S, Wang Y, et al. The association between ambient air pollution and allergic rhinitis: further epidemiological evidence from changchun, northeastern china. International Journal of Environmental Research and Public Health. 2017;14(3):226. https://doi.org/10.3390/ijerph14030226   DOI
18 Myong JP. Health effects of particulate matter. The Korean Journal of Medicine. 2016;91(2):106-113.   DOI
19 Bae HJ. The health impacts and benefits of cardiovascular and respiratory hospitalization attributed to PM2.5. Applied Economics. 2016;18(3):125-139.
20 Brandt EB, Myers JM, Ryan PH, Hershey GK. Air pollution and allergic diseases. Current Opinion in Pediatrics. 2015;27:724-735. https://doi.org/10.1097/mop.0000000000000286   DOI
21 Liu W, Cai J, Huang C, Hu Y, Fu Q, Zou Z, et al. Associations of gestational and early life exposures to ambient air pollution with childhood atopic eczema in Shanghai, China. Science of The Total Environment. 2016;572:34-42. https://doi.org/10.1016/j.scitotenv.2016.07.197   DOI
22 Kang SY, Song WJ, Cho SH, Chang YS. Time trends of the prevalence of allergic diseases in Korea: a systematic literature review. Asian Pacific Allergy. 2018;8(1):e8. https://doi.org/10.5415/apallergy.2018.8.e8   DOI
23 Oh EM, Eun SH, Park SH, Seo YS, Kim J, Seo WH, et al. Sleep disturbance in children with allergic disease. Allergy, Asthma & Respiratory Disease. 2015;3(1):70-76. https://doi.org/10.4168/aard.2015.3.1.70   DOI
24 Kim JH. Mental health in adolescents with allergic diseases-using data from the 2014 Korean youth's risk behavior web-based study. Journal of the Korean Society of School Health. 2015;28(2):79-88. https://doi.org/10.15434/kssh.2015.28.2.79   DOI
25 Cui W, Zack MM, Zahran HS. Health-related quality of life and asthma among United States adolescents. The Journal of Pediatrics. 2015;166(2):358-364. https://doi.org/10.1542/peds.2015-2776kkkk   DOI
26 Gowers AM, Cullinan P, Ayres JG, Anderson HR, Strachan DP, Holgate ST, et al. Does outdoor air pollution induce new cases of asthma? Biological plausibility and evidence; a review. Respirology. 2012;17:887-898. https://doi.org/10.1111/j.1440-1843.2012.02195.x   DOI
27 Chida Y, Hame M, Stepto A. A bidirectional relationship between psychosocial factors and atopic disorders: a systematic review and meta-analysis. Psychosomatic Medicine. 2008;70(1): 102-116. https://doi.org/10.1097/psy.0b013e31815c1b71   DOI
28 Lomholt FK, Nielsen SF, Nordestgaard BG. High alcohol consumption causes high IgE levels but not high risk of allergic disease. Journal of Allergy and Clinical Immunology. 2016;138 (5):1404-1413.   DOI
29 Oh SK, Seong HU, Lim DH, Kim JH, Son BK, Kim HC, et al. Relationship between air pollutants and prevalence of allergic disease/pulmonary function in students in Incheon. Pediatric Allergy Respiratory. Disease. 2010;20(4):264-276.
30 Anderson HR, Favarato G, Atkinson RW. Long-term exposure to air pollution and the incidence of asthma: meta-analysis of cohort studies. Air Qual Atmos Health. 2013;6:47-56. https://doi.org/10.1007/s11869-011-0144-5   DOI