Showing results (1-10 of 18) with videos related to
Sort By:
Pageof 2
Frontiers in Immunology|December 19, 2012
Mesenchymal cell differentiation during lymph node organogenesisAndrea Brendolan, Jorge H CaamañoThe Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|June 19, 2010
Preserved immune functions and controlled leukocyte oxidative stress in naturally long-lived mice: possible role of nuclear factor kappa BLorena Arranz, Jorge H Caamaño, Janet M Lord, et al.Molecular and Cellular Biology|January 26, 2011
A novel Gli3 enhancer controls the Gli3 spatiotemporal expression pattern through a TALE homeodomain protein binding siteSarah Coy, Jorge H Caamaño, Jaime Carvajal, et al.Journal of Immunology (Baltimore, Md. : 1950)|March 11, 2003
Inhibition of NF-kappa B activity in T and NK cells results in defective effector cell expansion and production of IFN-gamma required for resistance to Toxoplasma gondiiCristina M Tato, Alejandro Villarino, Jorge H Caamaño, et al.Blood|May 29, 2007
Lymphotoxin a-dependent and -independent signals regulate stromal organizer cell homeostasis during lymph node organogenesisAndrea White, Damian Carragher, Sonia Parnell, et al.European Journal of Immunology|April 7, 2011
Selective effects of NF-κB1 deficiency in CD4⁺ T cells on Th2 and TFh induction by alum-precipitated protein vaccinesKarine Serre, Elodie Mohr, Cécile Bénézech, et al.Journal of Immunology (Baltimore, Md. : 1950)|March 19, 2010
Ontogeny of stromal organizer cells during lymph node developmentCécile Bénézech, Andrea White, Emma Mader, et al.Immunity|September 4, 2012
Lymphotoxin-β receptor signaling through NF-κB2-RelB pathway reprograms adipocyte precursors as lymph node stromal cellsCécile Bénézech, Emma Mader, Guillaume Desanti, et al.Blood|February 18, 2014
CLEC-2 is required for development and maintenance of lymph nodesCécile Bénézech, Saba Nayar, Brenda A Finney, et al.Cell Death & Disease|November 28, 2019
NF-κB2 signalling in enteroids modulates enterocyte responses to secreted factors from bone marrow-derived dendritic cellsLauren G Jones, Andra Vaida, Louise M Thompson, et al.Pageof 2