7대 광역시에서 대기오염과 폐암 발생 및 사망에 대한 공간 분석

Spatial Analysis of Air Pollution and Lung Cancer Incidence and Mortality in 7 Metropolitan Cities in Korea.

  • 황승식 (국립암센터 암등록역학연구부) ;
  • 이진희 (국립암센터 암등록역학연구부) ;
  • 정규원 (국립암센터 암등록역학연구부) ;
  • 임정훈 (서울대학교 보건대학원 보건환경연구소) ;
  • 권호장 (단국대학교 의과대학 예방의학교실)
  • Hwang, Seung-Sik (Division of Cancer Registration and Epidemiology, National Cancer Center) ;
  • Lee, Jin-Hee (Division of Cancer Registration and Epidemiology, National Cancer Center) ;
  • Jung, Gyu-Won (Division of Cancer Registration and Epidemiology, National Cancer Center) ;
  • Lim, Jeong-Hun (School of Public Health and Institute of Health and Environment, Seoul National University) ;
  • Kwon, Ho-Jang (Department of Preventive Medicine, Dankook University College of Medicine)
  • 발행 : 2007.05.31

초록

Objectives : We aimed to assess the relationship between long-term exposure to air pollution and lung cancer in the Republic of Korea. Methods : Using the Annual Report of Ambient Air Quality in Korea, Annual Report of National Cancer Registration, and Annual Report on the Cause of Death Statistics, we calculated the standardized mortality ratio (SMR) and standardized incidence ratio (SIR) of lung cancer for both sexes in 74 areas from 7 Korean metropolitan cities. We performed random intercept, Poisson regression using empirical Bayes method. Results : Both SMRs and SIRs in the 7 metropolitan cities were higher in women than in men. Mean SIRs were 99.0 for males and 107.0 for females. The association between $PM_{10}$ and lung cancer risk differed according to gender. $PM_{10}$ was not associated with the risk of lung cancer in males, but both incidence and mortality of lung cancer were positively associated with $PM_{10}$ in females. The estimated percentage increases in the rate of female lung cancer mortality and incidence were 27% and 65% at the highest $PM_{10}$ category $({\geq}70\;{\mu}g/m^3)$, compared to the referent category $({\geq}50\;{\mu}g/m^3)$. Conclusions : Long-term exposure to $PM_{10}$ was significantly associated with female lung cancer incidence in 7 Korean metropolitan cities. Further study is undergoing to estimate the relative risk of $PM_{10}$ using multi-level analysis for controlling individual and regional confounders such as smoking and socioeconomic position.

키워드

참고문헌

  1. National Statistics Office. Annual Report on the Cause of Death Statistics (2005), National Statistics Office: 2006. p. 17 (Korean)
  2. Ministry of Health and Welfare. Cancer Incidence in Korea (1999-2001). Ministry of Health and Welfare; 2005. p. 38 (Korean)
  3. Alberg AJ, Samet JM. Epidemiology of lung cancer. Chest 2003; 123(1 Suppl): 21S-49S https://doi.org/10.1378/chest.123.1_suppl.21S
  4. International Agency for Research on Cancer: Tobacco Smoke and Involuntary Smoking. IARC Monograph 83. Lyon: International Agency for Research on Cancer; 2004. p. 161
  5. Pope CA 3rd, Burnett RT, Thun MJ, Calle EE, Krewski D, Ito K, Thurston GD. Lung cancer, cardiopulmonary mortality, and long-term exposure to fine particulate air pollution. JAMA 2002; 287(9): 1132-1141 https://doi.org/10.1001/jama.287.9.1132
  6. Hoek G, Brunekreef B, Goldbohm S, Fischer P, van den Brandt PA. Association between mortality and indicators of traffic-related air pollution in the Netherlands: A cohort study. Lancet 2002; 360(9341): 1203-1209 https://doi.org/10.1016/S0140-6736(02)11280-3
  7. Nafstad P, Haheim LL, Oftedal B, Gram F, Holme I, Hjermann I, Leren P. Lung cancer and air pollution: A 27 year follow up of 16 209 Norwegian men. Thorax 2003; 58(12): 1071- 1076 https://doi.org/10.1136/thorax.58.12.1071
  8. Chiu HF, Cheng MH, Tsai SS, Wu TN, Kuo HW, Yang CY. Outdoor air pollution and female lung cancer in Taiwan. Inhal Toxicol 2006; 18(13): 1025-1031 https://doi.org/10.1080/08958370600904561
  9. Sung JH, Cho SH, Kang DH, Yoo KY. Lung cancer, chronic obstructive pulmonary disease and air pollution. Korean J Prev Med 1997; 30(3): 585-598 (Korean)
  10. Ministry of Environment, National Institute of Environmental Research. Annual Report of Ambient Air Quality in Korea 2004. Ministry of Environment; 2005. pp. 151-165 (Korean)
  11. Ministry of Health and Welfare. Annual Report of National Cancer Registration 2001. Ministry of Health and Welfare: 2005. (Korean)
  12. National Statistics Office. Annual Report on the Cause of Death Statistics 2004. National Statistics Office; 2005. (Korean)
  13. National Statistics Office. [cited 01 JAN 2007]; [Available from URL:http://www.nso.go.kr] (Korean)
  14. Cressie, NAC. Statistics for Spatial Data. New York: John Wiley & Sons, Inc; 1993
  15. Breslow NE, Clayton DG. Approximate inference in generalized linear mixed models. J Am Stat Assoc 1993; 88(421): 9-25 https://doi.org/10.2307/2290687
  16. Stephen PK, Silvia CV, Tamre PD, Alice AS. S+SpatialStats User's Manual. New York: Springer; 1998
  17. Rabe-Hesketh S, Skrondal A. Generalized Latent Variable Modeling: Multilevel, Longitudinal, and Structural Equation Models. Boca Raton: Chapman & Hall/CRC; 2004
  18. Rabe-Hesketh S, Skrondal A. Multilevel and Longitudinal Modeling Using Stata. College Station: Stata Press; 2005
  19. Vineis P, Forastiere F, Hoek G, Lipsett M. Outdoor air pollution and lung cancer: Recent epidemiologic evidence Int J Cancer 2004; 111(5): 647-652 https://doi.org/10.1002/ijc.20292
  20. Cohen AJ, Ross Anderson H, Ostro B, Pandey KD, Krzyzanowski M, Kunzli N, Gutschmidt K, Pope A, Romieu I, Samet JM, Smith K. The global burden of disease dut to outdoor air pollution. J Toxicol Environment Health A 2005; 68(13-14): 1301-1307 https://doi.org/10.1080/15287390590936166
  21. International Agency for Research on Cancer. Monographs on the Evaluation of Carcinogenic Risks to Humans. Diesel and Gasoline Engine and Some Nitroarenes. Vol. 46. Lyon: IARC; 1989. p. 458
  22. Korean Ministry of Environment. Environment White Paper 2006. Korean Ministry of Environment; 2006. p. 388 (Korean)
  23. Nuckols JR, Ward MH, Jarup L. Using geographic information systems for exposure assessment in environmental epidemiology studies. Environ Health Perspect 2004; 112(9): 1007-1015 https://doi.org/10.1289/ehp.6738
  24. Elliott P, Wakefield JC, Best NG, Briggs DJ. Spatial Epidemiology: Methods and Applications. Oxford: Oxford University Press; 2000. pp. 431-432
  25. Elliott P, Wartenberg D. Spatial epidemiology: Current approaches and future challenges. Environ Health Perspect 2004; 112(9): 998- 1006 https://doi.org/10.1289/ehp.6735
  26. Richardson S, Thomson A, Best N, Elliott P. Interpretation posterior relative risk estimates in disease-mapping studies. Environ Health Perspect 2004; 112(9): 1016-1025 https://doi.org/10.1289/ehp.6740