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Relationships of Lead, Mercury and Cadmium Levels with the Timing of Menarche among Korean Girls

  • Received : 2019.12.14
  • Accepted : 2020.01.08
  • Published : 2020.01.31

Abstract

Purpose: This study utilized data from the Korean National Health and Nutrition Examination Survey (KNHANES) to explore differences in the timing of menarche in Korean girls according to blood heavy metal concentrations. Methods: This study performed a secondary analysis of cross-sectional data from the sixth KNHANES. Data from 179 female children and adolescents aged 10~18 were included in this study. The relationships of blood heavy metal concentrations (lead, mercury, and cadmium) with age of menarche were analyzed using complex sample multiple logistic regression. Results: In the participants of this study, the geometric mean values of blood lead, mercury, and cadmium concentrations were 1.15±0.04 ㎍/dL, 1.80±0.08 ㎍/L, and 0.30±0.03 ㎍/L, respectively. Mercury poisoning (>5 ㎍/L) was found in 1.5% of participants. Furthermore, significant relationships were found between blood lead and mercury concentrations and age at menarche (p for trend: p<.001 and p=.015, respectively). Conclusion: Through an analysis of national big data, this study found evidence that Korean girls showed a younger age at menarche in response to higher blood lead and mercury concentrations. To prevent and manage precocious puberty in Korean children and adolescents, a systematic policy that monitors both exposure to environmental hazards and blood heavy metal concentrations is needed.

Keywords

References

  1. Emurotu JE, Onianwa PC. Bioaccumulation of heavy metals in soil and selected food crops cultivated in Kogi state, North Central Nigeria. Environmental Systems Research. 2017;6(1):1-9. https://doi.org/10.1186/s40068-017-0098-1
  2. Myong JP. Health effects of particulate matter. The Korean Journal of Medicine. 2016;91(2):106-113. https://doi.org/10.3904/kjm.2016.91.2.106
  3. Taboada-Castro M, Dieguez-Villar A, Rodriguez-Blanco ML, Taboada-Castro MT. Agricultural impact of dissolved trace elements in runoff water from an experimental catchment with land-use changes. Communications in Soil Science and Plant Analysis. 2012; 43(1-2):81-87. https://doi.org/10.1080/00103624.2012.631421
  4. Ministry of Environment. Fine dust, what is it? [Internet]. Sejong: Ministry of Environment; 2016 [cited 2016 April 1]. Available from: http://www.me.go.kr/ebook/159/#page=1
  5. World Helath Organization; United Nations Environment Programme. State of the science of endocrine disrupting chemicals - 2012 [Internet]. Geneva: World Helath Organization, United Nations Environment Programme; 2013 [cited 2013 March 12]. Available from: https://www.who.int/ceh/publications/endocrine/en/
  6. Edelman C, Kudzma E, Mandle C. Health promotion throughout the life span. 8th ed. Maryland Heights: Elsvier Health Sciences; 2013. p. 415-416.
  7. Nkomo P, Richter LM, Kagura J, Mathee A, Naicker N, Norris SA. Environmental lead exposure and pubertal trajectory classes in South African adolescent males and females. The Science of the Total Environment. 2018;628-629(1):1437-1445. https://doi.org/10.1016/j.scitotenv.2018.02.150
  8. Selevan SG, Rice DC, Hogan KA, Euling SY, Pfahles-Hutchens A, Bethel J. Blood lead concentration and delayed puberty in girls. The New England Journal of Medicine. 2003;348(16):1527-1536. https://doi.org/10.1056/NEJMoa020880
  9. Wu T, Buck GM, Mendola P. Blood lead levels and sexual maturation in U.S. girls: The third national health and nutrition examination survey, 1988-1994. Environmental Health Perspectives. 2003; 111(5):737-741. https://doi.org/10.1289/ehp.6008
  10. Rull RP, Canchola AJ, Reynolds P, Horn-Ross PL. Urinary cadmium and the timing of menarche and pubertal development in girls. Journal of Adolescent Health. 2014;54(2):S10-S11. https://doi.org/10.1016/j.jadohealth.2013.10.037
  11. Chen X, Zhu G, Jin T. Effects of cadmium exposure on age of menarche and menopause. Toxics. 2017;6(1):1-5. https://doi.org/10.3390/toxics6010006
  12. O SJ. Particulate matter. Yonhapnews [Internet]. 2018 January 22 [cited 2018 January 25]. Latest. Available from: https://www.yna.co.kr/view/AKR20180121025400033
  13. Park JS. 42% Increase in patients treated with precocious puberty in the last five years. Medicaltoday [Internet]. 2019 September 20 [cited 2019 September 26]. Politics. Available from: http://www.mdtoday.co.kr/mdtoday/index.html?no=365212
  14. Kim HS. Update of precocious puberty. Journal of Korean Endocrine Society. 2008;23(3):165-173. https://doi.org/10.3803/jkes.2008.23.3.165
  15. Kim JY, Shin MS, Kim SH, Seo JH, Ma HS, Yang YJ. Association of iron status and food intake with blood heavy metal concentrations in Korean adolescent girls and women: Based on the 2010-2011 Korea national health and nutrition examination survey. Journal of Nutrition and Health. 2017;50(4):350-360. https://doi.org/10.4163/jnh.2017.50.4.350
  16. Choi IS, Choi SC. Contents and migration of heavy metals and phthalates in children's products and phthalates in children's products. Journal of Korean Society of Environmental Engineers. 2014;36(2):127-138. https://doi.org/10.4491/KSEE.2014.36.2.127
  17. Moon WJ, Kwon HJ, Hwang MK. The comparison of psycho-social behavior characteristics between girls with precocious puberty and normal girls. Journal of the Korea Academia-Industrial cooperation Society. 2018;19(2):357-369. https://doi.org/10.5762/KAIS.2018.19.2.357
  18. Hammerschmidt CR, Sandheinrich MB, Wiener JG, Rada RG. Effects of dietary methylmercury on reproduction of fathead minnows. Environmental Science and Technology. 2002;36(5):877-883. https://doi.org/10.1021/es011120p
  19. Matta MB, Linse J, Cairncross C, Francendese L, Kocan RM. Reproductive and transgenerational effects of methylmercury or aroclor 1268 on fundulus heteroclitus. Environmental Toxicology and Chemistry. 2001;20(2):327-335. https://doi.org/10.1002/etc.5620200213
  20. Naicker N, Norris SA, Mathee A, Becker P, Richter L. Lead exposure is associated with a delay in the onset of puberty in South African adolescent females: Findings from the birth to twenty cohort. The Science of the Total Environment. 2010;408(21):4949- 4954. https://doi.org/10.1016/j.scitotenv.2010.07.037
  21. Biro FM, Pajak A, Wolff MS, Pinney SM, Windham GC, Galvez MP, et al. Age of menarche in a longitudinal US cohort. Journal of Pediatric and Adolescent Gynecology. 2018;31(4):339-345. https://doi.org/10.1016/j.jpag.2018.05.002
  22. Korea Centers for Disease Control and Prevention. The sixth Korea national health and nutrition examination survey (KNHANES VI) [Internet]. Sejong: Korea Centers for Disease Control and Prevention; 2013 [cited 2015 August 12]. Available from: https://knhanes.cdc.go.kr/knhanes/sub03/sub03_06_02.do
  23. Ha MN. Heavy metal exposure status and health effects of Korean adolescents. 2015 Environmental Health and Toxicology Symposium and Conference; 2015 June 17-18; Jeju International Convention Center. Jeju: The Korean Society of Environmental Toxicology; 2015. p. 25-47.
  24. Center for Disease Control and Prevention. Fourth national report on human exposure to environmental chemicals [Internet]. Northeast Atlanta: Center for Disease Control and Prevention; 2019 [cited 2019 January 30]. Available from: https://www.cdc.gov/exposurereport/pdf/FourthReport_Upda tedTables_Volume1_Jan2019-508.pdf
  25. Health Canada. Fourth report on human biomonitoring of environmental chemicals in Canada [Internet]. Ottawa: Health Canada; 2017 [cited 2017 August 23]. Available from: https://www.canada.ca/en/health-canada/services/environme ntal-workplace-health/reports-publications/environmental-cont aminants/fourth-report-human-biomonitoring-environmental-c hemicals-canada.html
  26. Schulz C, Wilhelm M, Heudorf U, Kolossa-Gehring M. Update of the reference and HBM values derived by the German human biomonitoring commission. International Journal of Hygiene and Environmental Health. 2011;215(1):26-35. https://doi.org/10.1016/j.ijheh.2011.06.007
  27. National Institute of Environmental Research. Korean exposure factors handbook for children [Internet]. Incheon: National Institute of Environmental Research; 2016 [cited 2016 April 20]. Available from: http://webbook.me.go.kr/DLi-File/NIER/09/021/5609057.pdf
  28. National Institute of Environmental Research. Environmental exposure and health survey in children and adolescents (IV) [Internet]. Incheon: National Institute of Environmental Research; 2014. [cited 2014 December 10]. Available from: http://webbook.me.go.kr/DLi-File/NIER/06/021/5592827.pdf
  29. Greenspan LC, Lee MM. Endocrine disrupters and pubertal timing. Current Opinion in Endocrinology, Diabetes and Obesity. 2018;25(1):49-54. https://doi.org/10.1097/MED.0000000000000377
  30. Dearth RK, Hiney JK, Srivastava V, Burdick SB, Bratton GR, Dees WL. Effects of lead (PB) exposure during gestation and lactation on female pubertal development in the rat. Reproductive Toxicology. 2002;16(4):343-352. https://doi.org/10.1016/S0890-6238(02)00037-0