Radiation-related health hazards to uranium miners

. 2020 Oct ; 27 (28) : 34808-34822. [epub] 20200707

Jazyk angličtina Země Německo Médium print-electronic

Typ dokumentu časopisecké články, přehledy

Perzistentní odkaz   https://www.medvik.cz/link/pmid32638305
Odkazy

PubMed 32638305
DOI 10.1007/s11356-020-09590-7
PII: 10.1007/s11356-020-09590-7
Knihovny.cz E-zdroje

Concerns on health effects from uranium (U) mining still represent a major issue of debate. Any typology of active job in U mines is associated with exposure to U and its decay products, such as radon (Rn), thorium (Th), and radium (Ra) and its decay products with alpha-emission and gamma radiation. Health effects in U miners have been investigated in several cohort studies in the USA, Canada, Germany, the Czech Republic, and France. While public opinion is particularly addressed to pay attention to the safety of nuclear facilities, health hazard associated with mining is poorly debated. According to the many findings from cohort studies, the most significant positive dose-response relationship was found between occupational U exposure and lung cancer. Other types of tumors associated with occupational U exposure are leukemia and lymphoid cancers. Furthermore, it was found increased but not statistically significant death risk in U miners due to cancers in the liver, stomach, and kidneys. So far, there has not been found a significant association between U exposure and increased cardiovascular mortality in U miners. This review tries to address the current state of the art of these studies.

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Abbasi A (2017) Modeling of lung cancer risk due to radon exhalation of granite stone in dwelling houses. J Cancer Res Ther 13(2):208–212

Archer VE, Magnuson HJ, Holaday DA, Lawrence PA (1962) Hazards to health in uranium mining and milling. J Occup Med 4:55–60

Asic A, Kurtovic-Kozaric A, Besic L, Mehinovic L, Hasic A, Kozaric M, Hukic M, Marjanovic D (2017) Chemical toxicity and radioactivity of depleted uranium: the evidence from in vivo and in vitro studies. Environ Res 156:665–673

Aßenmacher M, Kaiser JC, Zaballa I, Gasparrini A, Küchenhoff H (2019) Exposure-lag-response associations between lung cancer mortality and radon exposure in German uranium miners. Radiat Environ Biophys 58(3):321–336

Baillargeon J (2001) Characteristics of the healthy worker effect. J Occup Med 16(2):359–366

Barbosa-Lorenzo R, Barros-Dios JM, Raíces Aldrey M, Cerdeira Caramés S, Ruano-Ravina A (2016) Residential radon and cancers other than lung cancer: a cohort study in Galicia, a Spanish radon-prone area. Eur J Epidemiol 31(4):437–441

Baur X, Woitowitz HJ (2016) Lung Cancer as an occupational disease. Pneumologie. 70(8):510–513

Bjørklund G, Christophersen OA, Chirumbolo S, Selinus O, Aaseth J (2017) Recent aspects of uranium toxicology in medical geology. Environ Res 156:526–533. https://doi.org/10.1016/j.envres.2017.04.010 DOI

Bjørklund G, Pivina L, Dadar M, Semenova Y, Chirumbolo S, Aaseth J (2019) Mercury exposure, epigenetic alterations, and brain tumorigenesis: a possible relationship? Curr Ed Chem. https://doi.org/10.2174/0929867326666190930150159

Bjørklund G, Pivina L, Dadar M, Semenova Y, Rahman MM, Aaseth J, Chirumbolo S (2020a) Depleted uranium and gulf war illness: updates and comments on possible mechanisms behind the syndrome. Environ Res 181:108927. https://doi.org/10.1016/j.envres.2019.108927 DOI

Bjørklund G, Semenova Y, Pivina L, Dadar M, Rahman MM, Aaseth J, Chirumbolo S (2020b) Uranium in drinking water: a public health threat. Arch Toxicol 94:1551–1560. https://doi.org/10.1007/s00204-020-02676-8 DOI

Boice JD Jr, Ellis ED, Golden AP, Girardi DJ, Cohen SS, Chen H, Mumma MT, Shore RE, Leggett RW (2018) The past informs the future: an overview of the million worker study and the Mallinckrodt chemical works cohort. Health Phys 114(4):381–385

Bräuner EV, Loft S, Sørensen M, Jensen A, Andersen CE, Ulbak K, Hertel O, Pedersen C, Tjønneland A, Krüger Kjær S, Raaschou-Nielsen O (2015) Residential radon exposure and skin cancer incidence in a prospective Danish cohort. PLoS One 10(8):e0135642

Brown SH (2019) Occupational radiation protection aspects of alkaline leach uranium in situ recovery (ISR) facilities in the United States. Health Phys 117(1):106–113

Brown SH, Chambers DB (2017) Uranium mining and NORM in North America – some perspectives on occupational radiation exposure. Health Phys 113(1):13–22

Brugge D (2016) Why has it taken so long to address the problems created by uranium mining in the Navajo nation? New Solut 25(4):436–439

Burghele BD, Cucos A, Papp B, Stetca FA, Mirea I, Constantin S (2018) Distribution of radon gas in Romanian show caves and radiation safety. Radiat Prot Dosim 181(1):1–5

Charles MW (2007) Radon exposure of the skin: II. Estimation of the attributable risk for skin cancer incidence. J Radiol Prot 27(3):253–274

Chen J (2017) Comparative study of radon exposure in Canadian homes and uranium mines-a discussion on the importance of national radon program. Radiat Prot Dosim 177(1–2):83–86

Chen J, Xie L (2019) Domestic radon exposure and childhood leukaemia and lymphoma: a population-based study in Сanada. Radiat Prot Dosim 184:486–492. https://doi.org/10.1093/rpd/ncz068 DOI

Cinelli G, Tondeur F, Dehandschutter B, Bossew P, Tollefsen T, De Cort M (2017) Mapping uranium concentration in soil: Belgian experience towards a European map. J Environ Radioact 166:220–234

Committee on Uranium Mining in Virginia; Committee on Earth Resources; National Research Council (2011) Uranium mining in Virginia: scientific, technical, environmental, human health and safety, and regulatory aspects of uranium mining and processing in Virginia. Washington (DC): National Academies Press (US) Available at https://www.ncbi.nlm.nih.gov/books/NBK201047/ . Accessed 16 February 2019

Cucoş Dinu A, Călugăr MI, Burghele BD, Dumitru OA, Cosma C, Onac BP (2017) Radon levels in Romanian caves: an occupational exposure survey. Environ Geochem Health 39(5):1085–1099

Darby SC, Whitley E, Howe GR, Hutchings SJ, Kusiak RA, Lubin JH, Morrison HI, Tirmarche M, Tomásek L, Radford EP (1995) Radon and cancers other than lung cancer in underground miners: a collaborative analysis of 11 studies. J Natl Cancer Inst 87(5):378–384

Dawson SE, Madsen GE (2011) Psychosocial and health impacts of uranium mining and milling on Navajo lands. Health Phys 101(5):618–625

Domingo JL, Colomina MT, Llobet JM, Jones MM, Singh PK, Campbell RA (1992) The action of chelating agents in experimental uranium intoxication in mice: variations with structure and time of administration. Fundam Appl Toxicol 19(3):350–357. https://doi.org/10.1016/0272-0590(92)90173-f DOI

Drubay D, Ancelet S, Acker A, Kreuzer M, Laurier D, Rage E (2014) Kidney cancer mortality and ionizing radiation among French and German uranium miners. Radiat Environ Biophys 53(3):505–513. https://doi.org/10.1007/s00411-014-0547-4 DOI

Dufey F, Walsh L, Sogl M, Tschense A, Schnelzer M, Kreuzer M (2013) Radiation dose dependent risk of liver cancer mortality in the German uranium miners cohort 1946-2003. J Radiol Prot 33(1):175–185. https://doi.org/10.1088/0952-4746/33/1/175 DOI

Dupree-Ellis E, Watkins J, Ingle JN, Phillips J (2000) External radiation exposure and mortality in a cohort of uranium processing workers. Am J Epidemiol 152(1):91–95. https://doi.org/10.1093/aje/152.1.91 DOI

Euser AM, Zoccali C, Jager KJ, Dekker FW (2009) Cohort studies: prospective versus retrospective. Nephron Clin Pract 113(3):c214–c217. https://doi.org/10.1159/000235241 DOI

Fan D, Zhuo W, Zhang Y (2016) Occupational exposure to radon in different kinds of non-uranium mines. Radiat Prot Dosimetry 170(1-4):311–314

Feng B, Tang Q, Zhan H, Chen B, Qiu S, Zhuo W (2019) Measurement of the potential alpha energy concentration of radon progeny by using liquid scintillation counting method. Radiat Prot Dosim 184:440–443. https://doi.org/10.1093/rpd/ncz069 DOI

Field RW (2010) Environmental factors in cancer: radon. Rev Environ Health—Spec Ed (Part 2) 25(1):25–31

Friedmann H, Baumgartner A, Gruber V, Kaineder H, Maringer FJ, Ringer W, Seidel C (2017a) The uncertainty in the radon hazard classification of areas as a function of the number of measurements. J Environ Radioact 173:6–10

Friedmann H, Baumgartner A, Bernreiter M, Gräser J, Gruber V, Kabrt F, Kaineder H, Maringer FJ, Ringer W, Seidel C, Wurm G (2017b) Indoor radon, geogenic radon surrogates and geology - investigations on their correlation. J Environ Radioact 166:382–389

Garcia-Rodriguez JA (2018) Radon gas-the hidden killer: what is the role of family doctors? Can Fam Physician 64(7):496–501

Greenberg M, Selikoff IJ (1993) Lung cancer in the Schneeberg mines: a reappraisal of the data reported by Harting and Hesse in 1879. Ann Occup Hyg 37(1):5–14

Gritsaenko T, Pierrefite-Carle V, Creff G, Vidaud C, Carle G, Santucci-Darmanin S (2018) Methods for analyzing the impacts of natural uranium on in vitro osteoclastogenesis. J Vis Exp 131:14–23

Grosche B, Kreuzer M, Kreisheimer M, Schnelzer M, Tschense A (2006) Lung cancer risk among German male uranium miners: a cohort study, 1946–1998. Br J Cancer 95(9):1280–1277. https://doi.org/10.1038/sj.bjc.6603403 DOI

Ha M, Hwang SS, Kang S, Park NW, Chang BU, Kim Y (2017) Geographical correlations between indoor radon concentration and risks of lung cancer, non-Hodgkin's lymphoma, and leukemia during 1999–2008 in Korea. Int J Environ Res Public Health 14(4):344

Hassfjell CS, Grimsrud TK, Standring WJF, Tretli S (2017) Lung cancer incidence associated with radon exposure in Norwegian homes. Tidsskr Nor Laegeforen 137:14–15

Hornung R, Meinhardt T (1987) Quantitative risk assessment of lung cancer in US uranium miners. Health Phys 52:417–430

IARC (2009) Working group on the evaluation of carcinogenic risks to humans (2009) a review of human carcinogens. Part D: radiation. Lyon, France. Available at https://www.ncbi.nlm.nih.gov/books/NBK304362/ . Accessed 31 Aug 2019

ICRP (2017) Occupational intakes of radionuclides: Part 3. ICRP Publication 137. Ann. ICRP 46(3/4). Available at http://www.icrp.org/publication.asp?id=ICRP%20Publication%20137 . Accessed 30 Jan 2019

Jones BA (2017) The social costs of uranium mining in the US Colorado plateau cohort, 1960-2005. Int J Public Health 62(4):471–478. https://doi.org/10.1007/s00038-017-0943-z DOI

Kang JK, Seo S, Jin YW (2019) Health effects of radon exposure. Yonsei Med J 60(7):597–603

Kathren RL, Moore RH (1986) Acute accidental inhalation of U: a 38-year follow-up. Health Phys 51(5):609–619. https://doi.org/10.1097/00004032-198611000-00004 DOI

Kavasi N, Csordas A, Nagy K, Beltran S, Kikaj D, Vaupotič J, Kovacs T (2019) Occupational exposure assessment at a therapeutic radon spa facility in Hungary. Radiat Prot Dosim 184:470–473. https://doi.org/10.1093/rpd/ncz077 DOI

Kelly-Reif K, Sandler DP, Shore D, Schubauer-Berigan M, Troester MA, Nylander-French L, Richardson DB (2019) Mortality and cancer incidence among underground uranium miners in the Czech Republic 1977-1992. Occup Environ Med 76(8):511–518

Kido E (2019) The legacies of the uranium mining company “Wismut” in East Germany. Asian J Peacebuilding 7(1):55–72

Kotík L, Becková V, Malátová I, Tomasek L (2017) 238U content in urine of uranium miners and its modeled values. Radiat Prot Dosim 177(4):424–439. https://doi.org/10.1093/rpd/ncx061 DOI

Kreuzer M, Brachner A, Lehmann F, Martignoni K, Wichmann HE, Grosche B (2002) Characteristics of the German uranium miners cohort study. Health Phys 83(1):26–34

Kreuzer M, Walsh L, Schnelzer M, Tschense A, Grosche B (2008) Radon and risk of extrapulmonary cancers: results of the German uranium miners' cohort study, 1960-2003. Br J Cancer 99(11):1946–1953. https://doi.org/10.1038/sj.bjc.6604776 DOI

Kreuzer M, Grosche B, Schnelzer M, Tschense A, Dufey F, Walsh L (2010) Radon and risk of death from cancer and cardiovascular diseases in the German uranium miners cohort study: follow-up 1946–2003. Radiat Environ Biophys 49(2):177–185. https://doi.org/10.1007/s00411-009-0249-5 DOI

Kreuzer M, Straif K, Marsh JW, Dufey F, Grosche B, Nosske D, Sogl M (2012) Occupational dust and radiation exposure and mortality from stomach cancer among German uranium miners, 1946-2003. Occup Environ Med 69(3):217–223. https://doi.org/10.1136/oemed-2011-100051 DOI

Kreuzer M, Fenske N, Schnelzer M, Walsh L (2015) Lung cancer risk at low radon exposure rates in German uranium miners. Br J Cancer 113(9):1367–1369. https://doi.org/10.1038/bjc.2015.324 DOI

Kreuzer M, Sobotzki C, Fenske N, Marsh JW, Schnelzer M (2017) Leukaemia mortality and low-dose ionising radiation in the WISMUT uranium miner cohort (1946–2013). Occup Environ Med 74(4):252–258. https://doi.org/10.1136/oemed-2016-103795 DOI

Kreuzer M, Sobotzki C, Schnelzer M, Fenske N (2018) Factors modifying the radon-related lung Cancer risk at low exposures and exposure rates among German uranium miners. Radiat Res 189(2):165–176. https://doi.org/10.1667/RR14889.1 DOI

Laurence D (2011) Mine safety. In: Darling P (ed) SME mining engineering handbook, vol 2, 3rd edn. Society for Mining, metallurgy, and exploration, Inc, Englewood

Little MP, Hall P, Charles MW (2007) Are cancer risks associated with exposures to ionising radiation from internal emitters greater than those in the Japanese A-bomb survivors? Radiat Environ Biophys 46(4):299–310

López M, Martín M (2011) Medical management of the acute radiation syndrome. Rep Pract Oncol Radiother 16(4):138–146. https://doi.org/10.1016/j.rpor.2011.05.001 DOI

Louw I (2020) Potential radiological impact of the phosphate industry in South Africa on the public and the environment (paper 1). J Environ Radioact 217. https://doi.org/10.1016/j.jenvrad.2020.106214

Lu S, Zhao FY (1990) Nephrotoxic limit and annual limit on intake for natural U. Health Phys 58(5):619–623. https://doi.org/10.1097/00004032-199005000-00007 DOI

Lubin JH (2010) Environmental factors in cancer: radon. Rev Environ Health 25(1):33–38

Malátová I, Becková V, Tomásek L, Slezáková-Marusiaková M, Hůlka J (2013) Reassessment of individual dosimetry of long-lived alpha radionuclides of uranium miners through experimental determination of urinary excretion of uranium. Radiat Prot Dosim 154(2):198–206. https://doi.org/10.1093/rpd/ncs208 DOI

Malátová I, Bečková V, Kotík L (2016) Urinary excretion of uranium in adult inhabitants of the Czech Republic. J Environ Radioact 152:92–96. https://doi.org/10.1016/j.jenvrad.2015.11.011 DOI

Markabayeva A, Bauer S, Pivina L, Bjørklund G, Chirumbolo S, Kerimkulova A, Semenova Y, Belikhina Т (2018) Increased prevalence of essential hypertension in areas previously exposed to fallout due to nuclear weapons testing at the Semipalatinsk test site, Kazakhstan. Environ Res 167:129–135. https://doi.org/10.1016/j.envres.2018.07.016 DOI

Marsh JW, Bailey MR (2013) A review of lung-to-blood absorption rates for radon progeny. Radiat Prot Dosimetry 157(4):499–514

McColl N, Auvinen A, Kesminiene A, Espina C, Erdmann F, de Vries E, Greinert R, Harrison J, Schüz J (2015) European code against Cancer 4th edition: Ionising and non-ionising radiation and cancer. Cancer Epidemiol 39(Suppl 1):S93–S100

McLaughlin JP (2019) Dosimetric and epidemiological approaches to radon lung cancer risk assessment. Radiat Prot Dosim 184(3–4):285–289. https://doi.org/10.1093/rpd/ncz082 DOI

Meisenberg O, Tschiersch J (2011) Thoron in indoor air: modeling for a better exposure estimate. Indoor Air 21(3):240–252

Meisenberg O, Mishra R, Joshi M, Gierl S, Rout R, Guo L, Agarwal T, Kanse S, Irlinger J, Sapra BK, Tschiersch J (2017) Radon and thoron inhalation doses in dwellings with earthen architecture: comparison of measurement methods. Sci Total Environ 579:1855–1862

Messier KP, Serre ML (2017) Lung and stomach cancer associations with groundwater radon in North Carolina, USA. Int J Epidemiol 46(2):676–685

Mielke S, Taeger D, Weitmann K, Brüning T, Hoffmann W (2018) Influence of quartz exposure on lung cancer types in cases of lymph node-only silicosis and lung silicosis in German uranium miners. Arch Environ Occup Health 73(3):140–153

Mironenkova NA, Magomet RD (2017) Hygienic assessment of working conditions on a radiation-hazardous factor in mines. Ecol Environ Conserv 23(2):1017–1021

Missimer TM, Teaf C, Maliva RG, Danley-Thomson A, Covert D, Hegy M (2019) Natural radiation in the rocks, soils, and groundwater of southern Florida with a discussion on potential health impacts. Int J Environ Res Public Health 16(10):1793. https://doi.org/10.3390/ijerph16101793 DOI

Möhner M, Lindtner M, Otten H, Gille HG (2006) Leukemia and exposure to ionizing radiation among German uranium miners. Am J Ind Med 49(4):238–248. https://doi.org/10.1002/ajim.20289 DOI

Molaie Y, Latifynia A, Kalamzadeh A, Abofazeli T, Nuraie M, Khansarii N (2012) Phagocyte functions of human subjects living in high level of natural radiation areas in Iran. J Ayub Med Coll Abbottabad 24(3–4):177–179

Mudd G (2008) Radon releases from Australian uranium mining and milling projects: assessing the UNSCEAR approach. J Environ Radioact 99(2):288–315. https://doi.org/10.1016/j.jenvrad.2007.08.001 DOI

National Academy of Sciences (NAS) (1988) Health risks of radon and other internally deposited alpha emitters. BEIR IV report of the National Academy of Sciences, National Research Council. National Academy, Washington Available at https://www.nap.edu/read/1026/chapter/1#v . Accessed 25 February 2019

Navaranjan G, Berriault C, Do M, Villeneuve PJ, Demers PA (2016) Cancer incidence and mortality from exposure to radon progeny among Ontario uranium miners. Occup Environ Med 73(12):838–845. https://doi.org/10.1136/oemed-2016-103836 DOI

Navaranjan G, Chambers D, Thompson PA, Do M, Berriault C, Villeneuve PJ, Demers PA (2019) Uncertainties associated with assessing Ontario uranium miners' exposure to radon daughters. J Radiol Prot 39(1):136–149. https://doi.org/10.1088/1361-6498/aaf1eb DOI

NRC - National Research Council (1999) Health effects of exposure to radon: BEIR VI. National Academies Press, Washington. https://doi.org/10.17226/5499 . Accessed 30 January 2019 DOI

Nuclear Energy Agency (2006) Forty years of uranium resources, production and demand in perspective: the red book retrospective. OECD, Paris. Available at https://www.oecd-nea.org/ndd/pubs/2006/6096-40-years-uranium.pdf Accessed 26 April 2020

OECD-NEA & IAEA, Uranium (2018) Resources, production and demand (‘Red Book’) World Nuclear Association, The Nuclear Fuel Report 2015, 2017 & 2019

Oh SS, Koh S, Kang H, Lee J (2016) Radon exposure and lung cancer: risk in nonsmokers among cohort studies. Ann Occup Environ Med 9(28):11

Oliver J (2015) The histogenesis of chronic uranium nephritis with especial reference to epithelial regeneration. J Exp Med 21:425–451

Ooe K, Watabe T, Kamiya T, Yoshimura T, Hosono M, Shinohara A, Hatazawa J (2019) Quantitative measurement of (219)Rn radioactivity in exhaled breath from patients with bone metastasis of castration-resistant prostate cancer treated with (223)RaCl(2). EJNMMI Phys 6(1):13. https://doi.org/10.1186/s40658-019-0249-8 DOI

Otahal P, Burian I, Nasir MM, Gregor Z (2014) Radon contribution to the total effective dose of uranium miners. Radiat Prot Dosim 160(1–3):117–119. https://doi.org/10.1093/rpd/ncu065 DOI

Paredes E, Avazeri E, Malard V, Vidaud C, Reiller PE, Ortega R, Nonell A, Isnard H, Chartier F, Bresson C (2016) Evidence of isotopic fractionation of natural uranium in cultured human cells. Proc Natl Acad Sci U S A 113(49):14007–14012

Paredes E, Malard V, Vidaud C, Avazeri E, Ortega R, Nonell A, Isnard H, Chartier F, Bresson C (2019) Isotopic variations of copper at the protein fraction level in neuronal human cells exposed in vitro to uranium. Analyst. 144:5928–5933. https://doi.org/10.1039/c9an01081e DOI

Pavlakis N, Pollock CA, McLean G, Bartrop R (1996) Deliberate overdose of uranium: toxicity and treatment. Nephron 72(2):313–317. https://doi.org/10.1159/000188862 DOI

Petersell V, Täht-Kok K, Karimov M, Milvek H, Nirgi S, Raha M, Saarik K (2017) Radon in the soil air of Estonia. J Environ Radioact 166:235–241

Pirchan A, Sikl H (1932) Cancer of the lung in miners of Jachymov (Joachimsthal). Report of cases observed in 1929–1930. Am J Cancer 16:681–722. https://doi.org/10.1158/ajc.1932.681 DOI

Plant J, Simpson PR, Smith B, Windley BF (1999) “Uranium ore deposits: products of the radioactive earth”, in Burns, P.C., and Finch, R., Reviews in mineralogy, volume 38: uranium: mineralogy, geochemistry and the environment. Washington D.C., USA.: Mineralogical Society of America, 255–320

Rage E, Caër-Lorho S, Drubay D, Ancelet S, Laroche P, Laurier D (2015) Mortality analyses in the updated French cohort of uranium miners (1946–2007). Int Arch Occup Environ Health 88(6):717–730. https://doi.org/10.1007/s00420-014-0998-6 DOI

Rage E, Richardson DB, Demers PA, Do M, Fenske N, Kreuzer M, Samet J, Wiggins C, Schubauer-Berigan MK, Kelly-Reif K, Tomasek L, Zablotska LB, Laurier D (2020) PUMA – pooled uranium miners analysis: cohort profile. Occup Environ Med 77(3):194–200. https://doi.org/10.1136/oemed-2019-105981 DOI

Ramkissoon A, Navaranjan G, Berriault C, Villeneuve PJ, Demers PA, Do MT (2018) Histopathologic analysis of lung cancer incidence associated with radon exposure among Ontario uranium miners. Int J Environ Res Public Health 15(11):E2413. https://doi.org/10.3390/ijerph15112413 DOI

Řeřicha JV, Kulich M, Řeřicha R, Shore DL, Sandler DP (2006) Incidence of leukemia, lymphoma, and multiple myeloma in Czech uranium miners: a case-cohort study. Environ Health Perspect 114(6):818–822

Rosenberger A, Hung RJ, Christiani DC, Caporaso NE, Liu G, Bojesen SE, Le Marchand L, Haiman CA, Albanes D, Aldrich MC, Tardon A, Fernández-Tardón G, Rennert G, Field JK, Kiemeney B, Lazarus P, Haugen A, Zienolddiny S, Lam S, Schabath MB, Andrew AS, Brunnsstöm H, Goodman GE, Doherty JA, Chen C, Teare MD, Wichmann HE, Manz J, Risch A, Muley TR, Johansson M, Brennan P, Landi MT, Amos CI, Pesch B, Johnen G, Brüning T, Bickeböller H, Gomolka M (2018) Genetic modifiers of radon-induced lung cancer risk: a genome-wide interaction study in former uranium miners. Int Arch Occup Environ Health 91(8):937–950. https://doi.org/10.1007/s00420-018-1334-3 DOI

Saccomanno G (1982) The contribution of uranium miners to lung cancer histogenesis. Recent Results Cancer Res 82:43–52. https://doi.org/10.1007/978-3-642-81768-7_5 DOI

Sakoda A, Ishimori Y, Tschiersch J (2016) Evaluation of the intake of radon through skin from thermal water. J Radiat Res 57(4):336–342

Santos TO, Rocha Z, Cruz P, Gouvea VA, Siqueira JB, Oliveira AH (2014) Radon dose assessment in underground mines in Brazil. Radiat Prot Dosim 160(1–3):120–123

Sarkar A, Wilton DH, Fitzgerald E (2017) Indoor radon in micro-geological setting of an indigenous community in Canada: a pilot study for hazard identification. Int J Occup Environ Med 8(2):69–79

Schneider J, Philipp M, Yamini P, Dörk T, Woitowitz HJ (2007) ATM gene mutations in former uranium miners of SDAG Wismut: a pilot study. Oncol Rep 17(2):477–482

Schröder C, Friedrich K, Butz M, Koppisch D, Otten H (2002) Uranium mining in Germany: incidence of occupational disease 1946-1999. Int Arch Occup Environ Health 75:235–242

Schubauer-Berigan MK, Daniels RD, Pinkerton LE (2009) Radon exposure and mortality among white and American Indian uranium miners: an update of the Colorado plateau cohort. Am J Epidemiol 169(6):718–730

Scott BR (2019) Epidemiologic studies cannot reveal the true shape of the dose-response relationship for radon-induced lung Cancer. Dose Response 17(1):1559325819828617

Seo S, Ha WH, Kang JK, Lee D, Park S, Kwon TE, Jin YW (2019) Health effects of exposure to radon: implications of the radon bed mattress incident in Korea. Epidemiol Health 41:e2019004

Sevc J, Kunz E, Placek V (1976) Lung cancer in uranium miners and long-term exposure to radon daughter products. Health Phys 30(6):433–437

Sevcová M, Sevc J (1989) Skin basalioma in workers at risk from the daughter products of radon. Pracov Lek 41:398–401

Sevcová M, Sevc J, Thomas J (1978) Alpha irradiation of the skin and the possibility of late effects. Health Phys 35(6):803–806

Sheen S, Lee KS, Chung WY, Nam S, Kang DR (2016) An updated review of case-control studies of lung cancer and indoor radon-is indoor radon the risk factor for lung cancer? Ann Occup Environ Med 28:70

Skubacz K, Wysocka M, Michalik B, Dziurzyński W, Krach A, Krawczyk J, Pałka T (2019) Modelling of radon hazards in underground mine workings. Sci Total Environ 695:133853

Smith TA, Kirkpatrick DR, Smith S, Smith TK, Pearson T, Kailasam A, Herrmann KZ, Schubert J, Agrawal DK (2017) Radioprotective agents to prevent cellular damage due to ionizing radiation. J Transl Med 15(1):232. https://doi.org/10.1186/s12967-017-1338-x DOI

Sogl M, Taeger D, Pallapies D, Brüning T, Dufey F, Schnelzer M, Straif K, Walsh L, Kreuzer M (2012) Quantitative relationship between silica exposure and lung cancer mortality in German uranium miners, 1946–2003. Br J Cancer 107(7):1188–1194. https://doi.org/10.1038/bjc.2012.374 DOI

Stram DO, Langholz B, Huberman M, Thomas DC (1999) Correcting for exposure measurement error in a reanalysis of lung cancer mortality for the Colorado plateau uranium miners cohort. Health Phys 77(3):265–275

Tchorz-Trzeciakiewicz DE, Parkitny T (2015) Radon as a tracer of daily, seasonal and spatial air movements in the underground tourist route “coal mine” (SW Poland). J Environ Radioact 149:90–98

Thun MJ, Baker DB, Steenland K, Smith AB, Halperin W, Berl T (1985) Renal toxicity in uranium mill workers. Scand J Work Environ Health 11(2):83–90. https://doi.org/10.5271/sjweh.2249 DOI

Tomásek L (2012) Lung cancer mortality among Czech uranium miners-60 years since exposure. J Radiol Prot 32(3):301–314. https://doi.org/10.1088/0952-4746/32/3/301 DOI

Tomásek L, Darby SC, Swerdlow AJ, Placek V, Kunz E (1993) Radon exposure and cancers other than lung cancer among uranium miners in West Bohemia. Lancet 341(8850):919–923

Tomásek L, Swerdlow AJ, Darby SC, Placek V, Kunz E (1994) Mortality in uranium miners in West Bohemia: a long-term cohort study. Occup Environ Med 51(5):308–315

Tomasek L, Rogel A, Tirmarche M, Mitton N, Laurier D (2008) Lung cancer in French and Czech uranium miners: radon-associated risk at low exposure rates and modifying effects of time since exposure and age at exposure. Radiat Res 169(2):125–137. https://doi.org/10.1667/RR0848.1 DOI

Vacquier B, Caer S, Rogel A, Feurprier M, Tirmarche M, Luccioni C, Quesne B, Acker A, Laurier D (2008) Mortality risk in the French cohort of uranium miners: extended follow-up 1946-1999. Occup Environ Med 65(9):597–604. https://doi.org/10.1136/oem.2007.034959 DOI

Vacquier B, Rogel A, Leuraud K, Caer S, Acker A, Laurier D (2009) Radon-associated lung cancer risk among French uranium miners: modifying factors of the exposure-risk relationship. Radiat Environ Biophys 48(1):1–9. https://doi.org/10.1007/s00411-008-0196-6 DOI

Vermeulen R, Portengen L, Lubin J, Stewart P, Blair A, Attfield MD, Silverman DT (2019) The impact of alternative historical extrapolations of diesel exhaust exposure and radon in the diesel exhaust in miners study (DEMS). Int J Epidemiol 49:459–466. https://doi.org/10.1093/ije/dyz189 DOI

Vienneau D, de Hoogh K, Hauri D, Vicedo-Cabrera AM, Schindler C, Huss A, Röösli M (2017) SNC study group. Effects of radon and UV exposure on skin cancer mortality in Switzerland. Environ Health Perspect 125(6):067009

Vogeltanz-Holm N, Schwartz GG (2018) Radon and lung cancer: what does the public really know? J Environ Radioact 192:26–23

Wagoner JK, Archer VE, Carroll BE, Duncan MA, Holaday DA, Pope A, Lawrence PA (1964) Cancer mortality patterns among US uranium miners and millers, 1950 through 1962. JNCI J Natl Cancer Inst 32(4):787–801. https://doi.org/10.1093/jnci/32.4.787 DOI

Walsh L, Dufey F, Tschense A, Schnelzer M, Grosche B, Kreuzer M (2010) Radon and the risk of cancer mortality--internal Poisson models for the German uranium miners cohort. Health Phys 99(3):292–300. https://doi.org/10.1097/HP.0b013e3181cd669d DOI

Walsh L, Dufey F, Tschense A, Schnelzer M, Sogl M, Kreuzer M (2012) Prostate cancer mortality risk in relation to working underground in the Wismut cohort study of German uranium miners, 1970-2003. BMJ Open 8:2–3. https://doi.org/10.1136/bmjopen-2012-001002 DOI

Walsh L, Grosche B, Schnelzer M, Tschense A, Sogl M, Kreuzer M (2015) A review of the results from the German Wismut uranium miners cohort. Radiat Prot Dosim 164(1–2):147–153. https://doi.org/10.1093/rpd/ncu281 DOI

Wang S, Ran Y, Lu B, Li J, Kuang H, Gong L, Hao Y (2019) A review of uranium-induced reproductive toxicity. Biol Trace Elem Res. https://doi.org/10.1007/s12011-019-01920-2

WHO (2009) WHO handbook on indoor radon a public health perspective. WHO international radon project. Available at http://whqlibdoc.who.int/publications/2009/9789241547673_eng.pdf . Accessed 24 April 2020

Winde F, Geipel G, Espina C, Schüz J (2019) Human exposure to uranium in south African gold mining areas using barber-based hair sampling. PLoS One 14(6):e0219059

World Nuclear Association (2019) World Uranium Mining Production. Available at http://www.world-nuclear.org/information-library/nuclear-fuel-cycle/mining-of-uranium/world-uranium-mining-production.aspx . Accessed 21 February 2019

Wysocka M, Chałupnik S, Chmielewska I, Janson E, Radziejowski W, Samolej K (2019) Natural radioactivity in polish coal mines: an attempt to assess the trend of radium release into the environment. Mine Water Environ 38:581–589. https://doi.org/10.1007/s10230-019-00626-0 DOI

Zablotska LB, Lane RS, Frost SE, Thompson PA (2014) Leukemia, lymphoma and multiple myeloma mortality (1950–1999) and incidence (1969–1999) in the Eldorado uranium workers cohort. Environ Res 130:43–50. https://doi.org/10.1016/j.envres.2014.01.002 DOI

Zoellner T (2009) Uranium: war, energy, and the rock that shaped the world. Penguin Group, New York

Zychowski KE, Kodali V, Harmon M, Tyler CR, Sanchez B, Suarez YO, Herbert G, Wheeler A, Avasarala S, Cerrato JM, Kunda NK, Muttil P, Shuey C, Brearley A, Ali A-M, Lin Y, Shoeb M, Erdely A, Campen MJ (2018) Respirable uranyl-vanadate-containing particulate matter derived from a legacy uranium mine site exhibits potentiated cardiopulmonary toxicity. Toxicol Sci 164(1):101–114

Tirmarche M, Harrison J, Laurier D, Blanchardon E, Paquet F, Marsh J (2012) Risk of lung cancer from radon exposure: contribution of recently published studies of uranium miners. Annals of the ICRP 41(3–4):368–377

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