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1.
Feng, Y.* et al.: Novel genetic variants in the P38MAPK pathway gene ZAK and susceptibility to lung cancer. Mol. Carcinog. 57, 216-224 (2018)
2.
Hovanec, J.* et al.: Lung cancer and socioeconomic status in a pooled analysis of case-control studies. PLoS ONE 13:e0192999 (2018)
3.
Ji, X.* et al.: Identification of susceptibility pathways for the role of chromosome 15q25.1 in modifying lung cancer risk. Nat. Commun. 9:3221 (2018)
4.
Kistler, T. et al.: Autoreactive IgE occurs naturally during childhood and is negatively correlated with allergic sensitization at age 10. Allergy 73, 829-829 (2018)
5.
Amos, C.I.* et al.: The OncoArray Consortium: A network for understanding the genetic architecture of common cancers. Cancer Epidemiol. Biomarkers Prev. 26, 126-135 (2017)
6.
Carreras-Torres, R.* et al.: Obesity, metabolic factors and risk of different histological types of lung cancer: A Mendelian randomization study. PLoS ONE 12:e0177875 (2017)
7.
Feng, Y.* et al.: Genetic variants of PTPN2 are associated with lung cancer risk: A re-analysis of eight GWASs in the TRICL-ILCCO consortium. Sci. Rep. 7:825 (2017)
8.
Harris, C. et al.: Associations between fatty acids and low-grade inflammation in children from the LISAplus birth cohort study. Eur. J. Clin. Nutr. 71, 1303-1311 (2017)
9.
Italia, S. et al.: Prices of over-the-counter drugs used by 15-year-old adolescents in Germany and their association with socioeconomic background. BMC Public Health 17:904 (2017)
10.
Liu, H.* et al.: Functional variants in DCAF4 associated with lung cancer risk in European populations. Carcinogenesis 38, 541-551 (2017)
11.
McKay, J.D.* et al.: Large-scale association analysis identifies new lung cancer susceptibility loci and heterogeneity in genetic susceptibility across histological subtypes. Nat. Genet. 49, 1126-1132 (2017)
12.
Olsson, A.C.* et al.: Exposure-response analyses of asbestos and lung cancer subtypes in a pooled analysis of case-control studies. Epidemiology 28, 288-299 (2017)
13.
Rosenberger, A.* et al.: Gene-set meta-analysis of lung cancer identifies pathway related to systemic lupus erythematosus. PLoS ONE 12:e0173339 (2017)
14.
Zhou, F.S.* et al.: Susceptibility loci of CNOT6 in the general mRNA degradation pathway and lung cancer risk - a re-analysis of eight GWASs. Mol. Carcinog. 56, 1227-1238 (2017)
15.
Behrens, T.* et al.: Occupational prestige, social mobility and the association with lung cancer in men. BMC Cancer 16:395 (2016)
16.
Bigert, C.* et al.: Lung cancer among firefighters: Smoking-adjusted risk estimates in a pooled analysis of case-control studies. J. Occup. Environ. Med. 58, 1137-1143 (2016)
17.
Chen, L.S.* et al.: Genetic risk can be decreased: Quitting smoking decreases and delays lung cancer for smokers with high and low CHRNA5 risk genotypes - a meta-analysis. EBioMedicine 11, 219-226 (2016)
18.
Fuertes, E. et al.: Residential greenness is differentially associated with childhood allergic rhinitis and aeroallergen sensitization in seven birth cohorts. Allergy 71, 1461-1471 (2016)
19.
Italia, S. et al.: A longitudinal comparison of drug use among 10-year-old children and 15-year-old adolescents from the German GINIplus and LISAplus birth cohorts. Eur. J. Clin. Pharmacol. 72, 301-310 (2016)
20.
Italia, S. et al.: Complementary and alternative medicine use among chronically Ill adolescents from 2 German birth cohorts. Forsch. Komplementmed. 23, 246-252 (2016)