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Showing results (61-70 of 80) with videos related to

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Nature Microbiology|September 8, 2019
Author Correction: Elevated faecal 12,13-diHOME concentration in neonates at high risk for asthma is produced by gut bacteria and impedes immune toleranceSophia R Levan, Kelsey A Stamnes, Din L Lin, et al.
Nature Microbiology|July 24, 2019
Elevated faecal 12,13-diHOME concentration in neonates at high risk for asthma is produced by gut bacteria and impedes immune toleranceSophia R Levan, Kelsey A Stamnes, Din L Lin, et al.
Clinical and Experimental Allergy : Journal of the British Society for Allergy and Clinical Immunology|March 14, 2023
The impact of prenatal dog keeping on infant gut microbiota developmentAriane R Panzer, Alexandra R Sitarik, Doug Fadrosh, et al.
JAMA|July 16, 1997
Epidemiology of sepsis syndrome in 8 academic medical centersK E Sands, D W Bates, P N Lanken, et al.
Oncogene|June 23, 2001
Biased distribution of chromosomal breakpoints involving the MLL gene in infants versus children and adults with t(4;11) ALLM Reichel, E Gillert, S Angermüller, et al.
Current Cancer Drug Targets|June 11, 2009
Targeting of Hsp32 in solid tumors and leukemias: a novel approach to optimize anticancer therapyK V Gleixner, M Mayerhofer, A Vales, et al.
Leukemia|December 1, 2016
Genomic and transcriptional landscape of P2RY8-CRLF2-positive childhood acute lymphoblastic leukemiaC Vesely, C Frech, C Eckert, et al.
Leukemia|April 29, 2015
KRAS and CREBBP mutations: a relapse-linked malicious liaison in childhood high hyperdiploid acute lymphoblastic leukemiaK Malinowska-Ozdowy, C Frech, A Schönegger, et al.
Nature Medicine|September 13, 2016
Neonatal gut microbiota associates with childhood multisensitized atopy and T cell differentiationKei E Fujimura, Alexandra R Sitarik, Suzanne Havstad, et al.
Leukemia|February 3, 2007
Immunobiological diversity in infant acute lymphoblastic leukemia is related to the occurrence and type of MLL gene rearrangementM W J C Jansen, L Corral, V H J van der Velden, et al.
Pageof 8

Showing results (61-70 of 80) with videos related to

Sort By:
Pageof 8
Nature Microbiology|September 8, 2019
Author Correction: Elevated faecal 12,13-diHOME concentration in neonates at high risk for asthma is produced by gut bacteria and impedes immune toleranceSophia R Levan, Kelsey A Stamnes, Din L Lin, et al.
Nature Microbiology|July 24, 2019
Elevated faecal 12,13-diHOME concentration in neonates at high risk for asthma is produced by gut bacteria and impedes immune toleranceSophia R Levan, Kelsey A Stamnes, Din L Lin, et al.
Clinical and Experimental Allergy : Journal of the British Society for Allergy and Clinical Immunology|March 14, 2023
The impact of prenatal dog keeping on infant gut microbiota developmentAriane R Panzer, Alexandra R Sitarik, Doug Fadrosh, et al.
JAMA|July 16, 1997
Epidemiology of sepsis syndrome in 8 academic medical centersK E Sands, D W Bates, P N Lanken, et al.
Oncogene|June 23, 2001
Biased distribution of chromosomal breakpoints involving the MLL gene in infants versus children and adults with t(4;11) ALLM Reichel, E Gillert, S Angermüller, et al.
Current Cancer Drug Targets|June 11, 2009
Targeting of Hsp32 in solid tumors and leukemias: a novel approach to optimize anticancer therapyK V Gleixner, M Mayerhofer, A Vales, et al.
Leukemia|December 1, 2016
Genomic and transcriptional landscape of P2RY8-CRLF2-positive childhood acute lymphoblastic leukemiaC Vesely, C Frech, C Eckert, et al.
Leukemia|April 29, 2015
KRAS and CREBBP mutations: a relapse-linked malicious liaison in childhood high hyperdiploid acute lymphoblastic leukemiaK Malinowska-Ozdowy, C Frech, A Schönegger, et al.
Nature Medicine|September 13, 2016
Neonatal gut microbiota associates with childhood multisensitized atopy and T cell differentiationKei E Fujimura, Alexandra R Sitarik, Suzanne Havstad, et al.
Leukemia|February 3, 2007
Immunobiological diversity in infant acute lymphoblastic leukemia is related to the occurrence and type of MLL gene rearrangementM W J C Jansen, L Corral, V H J van der Velden, et al.
Pageof 8