PuSH - Publication Server of Helmholtz Zentrum München

34 Records found.
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1.
Hung, R.J.* et al.: Lung cancer risk in never smokers of European descent is associated with genetic variation in the 5P15.33 TERT-CLPTM1L Region. J. Thorac. Oncol., accepted (2019)
2.
Jiang, X.* et al.: Shared heritability and functional enrichment across six solid cancers. Nat. Commun. 10:431 (2019)
3.
Li, Y.* et al.: Genetic interaction analysis among oncogenesis-related genes revealed novel genes and networks in lung cancer development. Oncotarget 10, 1760-1774 (2019)
4.
Yu, B.* et al.: The Consortium of Metabolomics Studies (COMETS): Metabolomics in 47 Prospective Cohort Studies. Am. J. Epidemiol. 188, 991-1012 (2019)
5.
Zhu, Y.* et al.: Elevated platelet count appears to be causally associated with increased risk of lung cancer: A Mendelian randomization analysis. Cancer Epidemiol. Biomarkers Prev. 28, 935-942 (2019)
6.
Ferreiro-Iglesias, A.* et al.: Fine mapping of MHC region in lung cancer highlights independent susceptibility loci by ethnicity. Nat. Commun. 9:3927 (2018)
7.
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)
8.
Kachuri, L.* et al.: Mendelian Randomization and mediation analysis of leukocyte telomere length and risk of lung and head and neck cancers. Int. J. Epidemiol., accepted (2018)
9.
Li, Y.* et al.: Genome-wide interaction study of smoking behavior and non-small cell lung cancer risk in Caucasian population. Carcinogenesis 39, 336-346 (2018)
10.
Rosenberger, A.* et al.: Genetic modifiers of radon-induced lung cancer risk: A genome-wide interaction study in former uranium miners. Int. Arch. Occup. Environ. Health 91, 937-950 (2018)
11.
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)
12.
Justice, A.E.* et al.: Genome-wide meta-analysis of 241,258 adults accounting for smoking behaviour identifies novel loci for obesity traits. Nat. Commun. 8:14977 (2017)
13.
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)
14.
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)
15.
Patel, Y.M.* et al.: Novel association of genetic markers affecting CYP2A6 activity and lung cancer risk. Cancer Res. 76, 5768-5776 (2016)
16.
Brenner, D.R.* et al.: Identification of lung cancer histology-specific variants applying Bayesian framework variant prioritization approaches within the TRICL and ILCCO consortia. Carcinogenesis 36, 1314-1326 (2015)
17.
Chen, L.S.* et al.: CHRNA5 risk variant predicts delayed smoking cessation and earlier lung cancer diagnosis - a meta-analysis. J. Natl. Cancer Inst. 107:djv100 (2015)
18.
Locke, A.E.* et al.: Genetic studies of body mass index yield new insights for obesity biology. Nature 518, 197-206 (2015)
19.
Poirier, J.G.* et al.: Informed genome-wide association analysis with family history as a secondary phenotype identifies novel loci of lung cancer. Genet. Epidemiol. 39, 197-206 (2015)
20.
Shungin, D.* et al.: New genetic loci link adipose and insulin biology to body fat distribution. Nature 518, 187-196 (2015)