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Can Machine Learning Models Predict Asparaginase-associated Pancreatitis in Childhood Acute Lymphoblastic Leukemia.
Nielsen RL, Wolthers BO, Helenius M, Albertsen BK, Clemmensen L, Nielsen K, Kanerva J, Niinimäki R, Frandsen TL, Attarbaschi A, Barzilai S, Colombini A, Escherich G, Aytan-Aktug D, Liu HC, Möricke A, Samarasinghe S, van der Sluis IM, Stanulla M, Tulstrup M, Yadav R, Zapotocka E, Schmiegelow K, Gupta R. Nielsen RL, et al. Among authors: yadav r. J Pediatr Hematol Oncol. 2022 Apr 1;44(3):e628-e636. doi: 10.1097/MPH.0000000000002292. J Pediatr Hematol Oncol. 2022. PMID: 35226426 Free PMC article.
Asparaginase-associated pancreatitis: a study on phenotype and genotype in the NOPHO ALL2008 protocol.
Wolthers BO, Frandsen TL, Abrahamsson J, Albertsen BK, Helt LR, Heyman M, Jónsson ÓG, Kõrgvee LT, Lund B, Raja RA, Rasmussen KK, Taskinen M, Tulstrup M, Vaitkevičienė GE, Yadav R, Gupta R, Schmiegelow K. Wolthers BO, et al. Among authors: yadav r. Leukemia. 2017 Feb;31(2):325-332. doi: 10.1038/leu.2016.203. Epub 2016 Jul 25. Leukemia. 2017. PMID: 27451978
Trypsin-encoding PRSS1-PRSS2 variations influence the risk of asparaginase-associated pancreatitis in children with acute lymphoblastic leukemia: a Ponte di Legno toxicity working group report.
Wolthers BO, Frandsen TL, Patel CJ, Abaji R, Attarbaschi A, Barzilai S, Colombini A, Escherich G, Grosjean M, Krajinovic M, Larsen E, Liang DC, Möricke A, Rasmussen KK, Samarasinghe S, Silverman LB, van der Sluis IM, Stanulla M, Tulstrup M, Yadav R, Yang W, Zapotocka E, Gupta R, Schmiegelow K; Ponte di Legno toxicity working group. Wolthers BO, et al. Among authors: yadav r. Haematologica. 2019 Mar;104(3):556-563. doi: 10.3324/haematol.2018.199356. Epub 2018 Nov 22. Haematologica. 2019. PMID: 30467200 Free PMC article.
Genomic profiling of thousands of candidate polymorphisms predicts risk of relapse in 778 Danish and German childhood acute lymphoblastic leukemia patients.
Wesołowska-Andersen A, Borst L, Dalgaard MD, Yadav R, Rasmussen KK, Wehner PS, Rasmussen M, Ørntoft TF, Nordentoft I, Koehler R, Bartram CR, Schrappe M, Sicheritz-Ponten T, Gautier L, Marquart H, Madsen HO, Brunak S, Stanulla M, Gupta R, Schmiegelow K. Wesołowska-Andersen A, et al. Among authors: yadav r. Leukemia. 2015 Feb;29(2):297-303. doi: 10.1038/leu.2014.205. Epub 2014 Jul 3. Leukemia. 2015. PMID: 24990611 Free PMC article.
Inherited coding variants at the CDKN2A locus influence susceptibility to acute lymphoblastic leukaemia in children.
Xu H, Zhang H, Yang W, Yadav R, Morrison AC, Qian M, Devidas M, Liu Y, Perez-Andreu V, Zhao X, Gastier-Foster JM, Lupo PJ, Neale G, Raetz E, Larsen E, Bowman WP, Carroll WL, Winick N, Williams R, Hansen T, Holm JC, Mardis E, Fulton R, Pui CH, Zhang J, Mullighan CG, Evans WE, Hunger SP, Gupta R, Schmiegelow K, Loh ML, Relling MV, Yang JJ. Xu H, et al. Among authors: yadav r. Nat Commun. 2015 Jun 24;6:7553. doi: 10.1038/ncomms8553. Nat Commun. 2015. PMID: 26104880 Free PMC article.
A genome-wide association study identifies CDHR3 as a susceptibility locus for early childhood asthma with severe exacerbations.
Bønnelykke K, Sleiman P, Nielsen K, Kreiner-Møller E, Mercader JM, Belgrave D, den Dekker HT, Husby A, Sevelsted A, Faura-Tellez G, Mortensen LJ, Paternoster L, Flaaten R, Mølgaard A, Smart DE, Thomsen PF, Rasmussen MA, Bonàs-Guarch S, Holst C, Nohr EA, Yadav R, March ME, Blicher T, Lackie PM, Jaddoe VW, Simpson A, Holloway JW, Duijts L, Custovic A, Davies DE, Torrents D, Gupta R, Hollegaard MV, Hougaard DM, Hakonarson H, Bisgaard H. Bønnelykke K, et al. Among authors: yadav r. Nat Genet. 2014 Jan;46(1):51-5. doi: 10.1038/ng.2830. Epub 2013 Nov 17. Nat Genet. 2014. PMID: 24241537
Transcriptome analysis of root-knot nematode (Meloidogyne incognita)-infected tomato (Solanum lycopersicum) roots reveals complex gene expression profiles and metabolic networks of both host and nematode during susceptible and resistance responses.
Shukla N, Yadav R, Kaur P, Rasmussen S, Goel S, Agarwal M, Jagannath A, Gupta R, Kumar A. Shukla N, et al. Among authors: yadav r. Mol Plant Pathol. 2018 Mar;19(3):615-633. doi: 10.1111/mpp.12547. Epub 2017 Apr 24. Mol Plant Pathol. 2018. PMID: 28220591 Free PMC article.
TIMP-1 increases expression and phosphorylation of proteins associated with drug resistance in breast cancer cells.
Hekmat O, Munk S, Fogh L, Yadav R, Francavilla C, Horn H, Würtz SØ, Schrohl AS, Damsgaard B, Rømer MU, Belling KC, Jensen NF, Gromova I, Bekker-Jensen DB, Moreira JM, Jensen LJ, Gupta R, Lademann U, Brünner N, Olsen JV, Stenvang J. Hekmat O, et al. Among authors: yadav r. J Proteome Res. 2013 Sep 6;12(9):4136-51. doi: 10.1021/pr400457u. Epub 2013 Aug 21. J Proteome Res. 2013. PMID: 23909892
TIMP1 overexpression mediates resistance of MCF-7 human breast cancer cells to fulvestrant and down-regulates progesterone receptor expression.
Bjerre C, Vinther L, Belling KC, Würtz SØ, Yadav R, Lademann U, Rigina O, Do KN, Ditzel HJ, Lykkesfeldt AE, Wang J, Nielsen HB, Brünner N, Gupta R, Schrohl AS, Stenvang J. Bjerre C, et al. Among authors: yadav r. Tumour Biol. 2013 Dec;34(6):3839-51. doi: 10.1007/s13277-013-0969-7. Epub 2013 Jul 24. Tumour Biol. 2013. PMID: 23881388
3,311 results