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Sökning: WFRF:(Foresta C) > (2021) > Identification of 2...

LIBRIS Formathandbok  (Information om MARC21)
FältnamnIndikatorerMetadata
00003931naa a2200925 4500
001oai:prod.swepub.kib.ki.se:147287278
003SwePub
008240811s2021 | |||||||||||000 ||eng|
024a http://kipublications.ki.se/Default.aspx?queryparsed=id:1472872782 URI
024a https://doi.org/10.1038/s41467-021-24334-y2 DOI
040 a (SwePub)ki
041 a engb eng
042 9 SwePub
072 7a ref2 swepub-contenttype
072 7a art2 swepub-publicationtype
100a Pluta, J4 aut
2451 0a Identification of 22 susceptibility loci associated with testicular germ cell tumors
264 c 2021-07-23
264 1b Springer Science and Business Media LLC,c 2021
520 a Testicular germ cell tumors (TGCT) are the most common tumor in young white men and have a high heritability. In this study, the international Testicular Cancer Consortium assemble 10,156 and 179,683 men with and without TGCT, respectively, for a genome-wide association study. This meta-analysis identifies 22 TGCT susceptibility loci, bringing the total to 78, which account for 44% of disease heritability. Men with a polygenic risk score (PRS) in the 95th percentile have a 6.8-fold increased risk of TGCT compared to men with median scores. Among men with independent TGCT risk factors such as cryptorchidism, the PRS may guide screening decisions with the goal of reducing treatment-related complications causing long-term morbidity in survivors. These findings emphasize the interconnected nature of two known pathways that promote TGCT susceptibility: male germ cell development within its somatic niche and regulation of chromosomal division and structure, and implicate an additional biological pathway, mRNA translation.
700a Pyle, LC4 aut
700a Nead, KT4 aut
700a Wilf, R4 aut
700a Li, MY4 aut
700a Mitra, N4 aut
700a Weathers, B4 aut
700a D'Andrea, K4 aut
700a Almstrup, K4 aut
700a Anson-Cartwright, L4 aut
700a Benitez, J4 aut
700a Brown, CD4 aut
700a Chanock, S4 aut
700a Chen, C4 aut
700a Cortessis, VK4 aut
700a Ferlin, A4 aut
700a Foresta, C4 aut
700a Gamulin, M4 aut
700a Gietema, JA4 aut
700a Grasso, C4 aut
700a Greene, MH4 aut
700a Grotmol, T4 aut
700a Hamilton, RJ4 aut
700a Haugen, TB4 aut
700a Hauser, R4 aut
700a Hildebrandt, MAT4 aut
700a Johnson, ME4 aut
700a Karlsson, Ru Karolinska Institutet4 aut
700a Kiemeney, LA4 aut
700a Lessel, D4 aut
700a Lothe, RA4 aut
700a Loud, JT4 aut
700a Loveday, C4 aut
700a Martin-Gimeno, P4 aut
700a Meijer, C4 aut
700a Nsengimana, J4 aut
700a Quinn, DI4 aut
700a Rafnar, T4 aut
700a Ramdas, S4 aut
700a Richiardi, L4 aut
700a Skotheim, RI4 aut
700a Stefansson, K4 aut
700a Turnbull, C4 aut
700a Vaughn, DJ4 aut
700a Wiklund, Fu Karolinska Institutet4 aut
700a Wu, XF4 aut
700a Yang, D4 aut
700a Zheng, T4 aut
700a Wells, AD4 aut
700a Grant, SFA4 aut
700a Rajpert-De Meyts, E4 aut
700a Schwartz, SM4 aut
700a Bishop, DT4 aut
700a McGlynn, KA4 aut
700a Kanetsky, PA4 aut
700a Nathanson, KL4 aut
710a Karolinska Institutet4 org
773t Nature communicationsd : Springer Science and Business Media LLCg 12:1, s. 4487-q 12:1<4487-x 2041-1723
856u https://www.nature.com/articles/s41467-021-24334-y.pdf
8564 8u http://kipublications.ki.se/Default.aspx?queryparsed=id:147287278
8564 8u https://doi.org/10.1038/s41467-021-24334-y

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