CONDITIONS OF THE CHROMOSOMAL DAMAGE IN COAL MINERS

Capa

Citar

Texto integral

Resumo

Working in coal mines, despite all achievements of modern science and technology, still remains among the most dangerous occupations to the health. The review of researches about the chromosomal damage in coal miners was performed. We searched information in the following databases - PubMed, http://www.sciencedirect.com and in the electronic library http://elibrary.ru with the use of the search strategy adopted in the Cochrane Collaboration. Inclusion criteria were: 1) randomized, controlled original researches; 2) researches performed in 1993-2016 where coal miners were the object of the study; 3) articles described chromosomal aberrations (CAs), micronuclei (MN), sister chromatid exchanges (SCE), DNA comets as biomarkers of the exposure. Exclusion criteria were other methods of the assessment of DNA damage; lack of data on the type of mines or coal mines/open-cast mines (uranium, tin, etc.); lack of access to the full text in Russian or English. As a result of the search 12 articles met selection criteria and showed a chromosomal damage in miners were selected. The results of researches performed in different countries (Russia, Turkey, Brazil, Colombia, Netherlands, Peru and India) demonstrate the increased frequency of chromosomal abnormalities in employees of coal mining industry. Damages are accumulated in cells of different types (buccal epithelium and lymphocytes) and can be detected by methods of the assessment of CAs, SCE, MN and DNA comet assay that indicating the complex basis of genotoxicants. The results of the analysis of the relationship between the cytogenetic markers, age and length of service are contradictory. The formation of occupational pulmonary diseases is accompanied by an additional induction of cytogenetic damage. In general, the analysis confirmed the high genotoxic risk of working conditions in underground as well as open-cast miners.

Sobre autores

Yu. Kulemin

The Federal Research Center of Coal and Coal Chemistry» of Siberian Branch of the Russian Academy of Sciences; Kemerovo State University

Autor responsável pela correspondência
Email: noemail@neicon.ru
Rússia

V. Minina

The Federal Research Center of Coal and Coal Chemistry» of Siberian Branch of the Russian Academy of Sciences; Kemerovo State University

Email: vminina@mail.ru
Rússia

M. Sinitsky

The Federal Research Center of Coal and Coal Chemistry» of Siberian Branch of the Russian Academy of Sciences; Kemerovo State University

Email: noemail@neicon.ru
Rússia

Ya. Savchenko

The Federal Research Center of Coal and Coal Chemistry» of Siberian Branch of the Russian Academy of Sciences

Email: noemail@neicon.ru
Rússia

V. Volobaev

Kemerovo State University

Email: noemail@neicon.ru
Rússia

Bibliografia

  1. Hosgood H.D., Chapman R.S., Wei H., He X., Tian L., Liu L.Z., et al. Coal mining is associated with lung cancer risk in Xuanwei, China. Am. J. Ind. Med. 2012; 55(1): 5-10.
  2. Fernández-Navarro P., García-Pérez J., Ramis R., Boldo E., López-Abente G. Proximity to mining industry and cancer mortality. Sci. Total. Environ. 2012; 435-6: 66-73.
  3. Мун С.А., Ларин С.А., Глушков А.Н. Влияние роста добычи угля на загрязнение атмосферы и заболеваемость раком легкого в Кемеровской области. Современные проблемы науки и образования. 2013; (1): 69.
  4. Мун С.А., Глушков А.Н. Расчет прогнозов заболеваемости раком легкого у мужчин в связи с техногенным загрязнением атмосферы в Кемеровской области. Гигиена и санитария. 2014; 93(2): 37-41.
  5. Da Silva J., de Freitas T., Heuser V., Marinho J.R., Bittencourt F., Cerski C.T. et al. Effects of chronic exposure to coal in wild rodents (Ctenomys torquatus) evaluated by multiple methods and tissues. Mutat. Res. 2000; 470: 39-51.
  6. León G., Perez L.E., Linares J.C. Hartmann A., Quintana M. Genotoxic effects in wild rodents (Rattus rattus and Mus musculus) in an open coal mining area. Mutat. Res. 2007; 630: 42-9.
  7. Cabarcas-Montalvo M., Olivero-Verbel J., Corrales-Aldana H. Genotoxic effects in blood cells of Mus musculus and Iguana iguana living near coal mining areas in Colombia. Sci. Total Environ. 2012; 416: 208-14.
  8. Smerhovsky Z., Landa K., Rössner P., Juzova D., Brabec M., Zudova Z. et al. Increased risk of cancer in radon-exposed miners with elevated frequency of chromosomal aberrations. Mutat. Res. 2002; 15: 514(1-2): 165-76.
  9. Peluso M.E., Munnia A., Giese R.W., Chellini E., Ceppi M., Capacci F. Oxidatively damaged DNA in the nasal epithelium of workers occupationally exposed to silica dust in Tuscany region, Italy. Mutagenesis. 2015; 30(4): 519-25.
  10. Rojas E., Valverde M., Sordo M., Altamirano-Lozano M., Ostrosky-Wegman P. Single cell gel electrophoresis assay in the evaluation of metal carcinogenicity. In: Metal Ions in Biology and Medicine. International Symposium. Vol. 4. Tarragona, Spain: John Libbey Eurotext; 1996: 375-7.
  11. Jomova K., Valko M. Advances in metal-induced oxidative stress and human disease. Toxicology. 2011; 283: 65-87.
  12. Guo H., Huang K., Zhang X., Zhang W., Guan L., Kuang D. et al. Women are more susceptible than men to oxidative stress and chromosome damage caused by polycyclic aromatic hydrocarbons exposure. Environ. Mol. Mutagen. 2014; 55(6): 472-81.
  13. Ada A.O., Demiroglu C., Yilmazer M., Suzen H.S., Demirbag A.E., Efe S. et al. Cytogenetic damage in Turkish coke oven workers exposed to polycyclic aromatic hydrocarbons: Association with CYP1A1, CYP1B1, EPHX1, GSTM1, GSTT1, and GSTP1 gene polymorphisms. Arh. Hig. Rada Toksikol. 2013; 64(3): 359-69.
  14. Cheng J., Leng S., Li H., Huang C., Niu Y., Zhang L. et al. Suboptimal DNA repair capacity predisposes coke-oven workers to accumulate more chromosomal damages in peripheral lymphocytes. Cancer Epidemiol. Biomarkers Prev. 2009; 18(3): 987-93.
  15. Минина В.И., Ларин С.А., Мун С.А., Глушков А.Н., Дружинин В.Г., Савченко Я.А. Комплексный анализ мутагенной и канцерогенной опасности условий труда на Кемеровском АО «Кокс». Медицина труда и промышленная экология. 2006; (11): 19-25.
  16. Дружинин В.Г. Сравнительная оценка кластогенного потенциала промышленных предприятий разного профиля. Гигиена и санитария. 2003; 82(5): 33-6.
  17. Celic M., Donbak L., Unal F., Yuzbasioglu D., Aksoy H., Yilmaz S. Cytogenetic damage in workers from a coal-fired power plant. Mutat. Res. 2007; 627: 158-63
  18. Савченко Я.А., Дружинин В.Г., Минина В.И., Глушков А.Н., Ахматьянова В.Р., Остапцева А.В. и др. Цитогенетический анализ генотоксических эффектов у работников теплоэнергетического производства. Генетика. 2008; 44(6): 857-62.
  19. Минина В.И., Савченко Я.А., Баканова М.Л., Остапцева А.В., Попова О.А., Шаталина И.В. и др. Изучение вклада генетического полиморфизма в формирование индивидуальной чувствительности генома у рабочих теплоэнергетики. Гигиена и санитария. 2011; 80(5): 30-2.
  20. Donbak L., Rencuzogullar E., Yavuz A., Topaktas M. The genotoxic risk of underground coal miners from Turkey. Mutat. Res. 2005; 588: 82-7.
  21. Santa Maria S.R., Arana M., Ramirez O. Chromosomal aberrations in peripheral lymphocytes from male native miners working in the Peruvian Andes. Genet. Mol. Biol. 2007; 30(4): 1135-8.
  22. Rohr P., Kvitko K., Silva F.R., Menezes A.P., Porto C., Sarmento M. et al. Genetic and oxidative damage of peripheral blood lymphocytes in workers with occupational exposure to coal. Mutat. Res. 2013; 758: 23-8.
  23. Rohr P., da Silva J., da Silva F.R., Sarmento M., Porto C., Debastiani R. et al. Evaluation of genetic damage in open-cast coal mine workers using the buccal micronucleus cytome assay. Environ. Mol. Mutagen. 2013; 54: 65-71.
  24. Kvitko K., Bandinelli E., Henriques J.A., Heuser V.D., Rohr P., da Silva F.R. et al. Susceptibility to DNA damage in workers occupationally exposed to pesticides, to tannery chemicals and to coal dust during mining. Genet. Mol. Biol. 2012; 35(4 Suppl.): 1060-8.
  25. León-Mejía G., Espitia-Pérez L., Hoyos-Giraldo L.S., Da Silva J., Hart-mann A., Henriques J.A. et al. Assessment of DNA damage in coal open-cast mining workers using the cytokinesis-blocked micronucleus test and the comet assay. Sci. Total Environ. 2011; 409: 686-91.
  26. León-Mejía G., Quintana M., Debastiani R., Dias J., Espitia-Pérez L., Hartmann A. et al. Genetic damage in coal miners evaluated by buccal micronucleus cytome assay. Ecotoxicol. Environ. Saf. 2014; 107: 133-9.
  27. Stierum R.H., Hageman G.J., Welle I.J., Albering H.J., Schreurs J.G., Kleinjans J.C. Evaluation of exposure reducing measures on parameters of genetic risk in a population occupationally exposed to coal fly ash. Mutat Res. 1993; 319(4): 245-55.
  28. Kumar A., Yadav A., Giri S.K., Dev K., Gautam S.K., Gupta R. et al. Effect of genetic polymorphism of GSTM1 and GSTT1 genotypes on cytogenetic biomarkers among coaltar workers. Environ. Toxicol. Pharmacol. 2011; 32: 128-35.
  29. Минина В.И., Кулемин Ю.Е., Толочко Т.А., Мейер А.В., Савченко Я.А., Волобаев В.П. и др. Генотоксические эффекты воздействия производственной среды у шахтеров Кузбасса. Медицина труда и промышленная экология. 2015; (5): 4-8
  30. Schins R.P., Borm P.J. Mechanisms and mediators in coal dust induced toxicity: a review. Ann. Occup. Hyg. 1999; 43(1): 7-33.
  31. Kamp D.W., Graceffa P., Pryor W.A., Weitzman S.A. The role of free radicals in asbestos induced diseases. Free Radic. Biol. Med. 1992; 12(4): 293-315.
  32. Mastrangelo G., Fadda E., Marzia V. Polycyclic aromatic hydrocarbons and cancer in man. Environ. Health Perspect. 1996; 104(11): 1166-70.
  33. Ulker O.C., Ustundag A., Duydu Y., Yucesoy B., Karakaya A. Cytogenetic monitoring of coal workers and patients with coal workers’ pneumoconiosis in Turkey. Environ. Mol. Mutagen. 2008; 49(3): 232-7.
  34. Volobaev V.P., Sinitsky M.Yu., Larionov A.V., Druzhinin V.G., Gafarov N.I., Minina Varvara I. et al. Modifying influence of occupational inflammatory diseases on the level of chromosome aberrations in coal miners. Mutagenesis. 2016; 31(2): 225-9.

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML

Declaração de direitos autorais © Kulemin Y.E., Minina V.I., Sinitsky M.Y., Savchenko Y.A., Volobaev V.P., 2024



СМИ зарегистрировано Федеральной службой по надзору в сфере связи, информационных технологий и массовых коммуникаций (Роскомнадзор).
Регистрационный номер и дата принятия решения о регистрации СМИ: серия ПИ № ФС 77 - 37884 от 02.10.2009.