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Journal of Immunology (Baltimore, Md. : 1950)|September 16, 2009
A novel role for plasmin-mediated degradation of opsonizing antibody in the evasion of host immunity by virulent, but not attenuated, Francisella tularensisDeborah D Crane, Shayna L Warner, Catharine M BosioInfection and Immunity|October 3, 2007
Chlamydia trachomatis species-specific induction of ezrin tyrosine phosphorylation functions in pathogen entryKena A Swanson, Deborah D Crane, Harlan D CaldwellVaccine|August 7, 2010
Long lived protection against pneumonic tularemia is correlated with cellular immunity in peripheral, not pulmonary, organsRebecca V Anderson, Deborah D Crane, Catharine M BosioPlos One|March 20, 2012
Generation of a convalescent model of virulent Francisella tularensis infection for assessment of host requirements for survival of tularemiaDeborah D Crane, Dana P Scott, Catharine M BosioAntimicrobial Agents and Chemotherapy|April 28, 2005
Bactericidal activity of first-choice antibiotics against gamma interferon-induced persistent infection of human epithelial cells by Chlamydia trachomatisNathalie Reveneau, Deborah D Crane, Elizabeth Fischer, et al.Journal of Immunology (Baltimore, Md. : 1950)|February 5, 2013
B1a cells enhance susceptibility to infection with virulent Francisella tularensis via modulation of NK/NKT cell responsesDeborah D Crane, Amanda J Griffin, Tara D Wehrly, et al.Clinical and Vaccine Immunology : CVI|November 21, 2014
Successful protection against tularemia in C57BL/6 mice is correlated with expansion of Francisella tularensis-specific effector T cellsAmanda J Griffin, Deborah D Crane, Tara D Wehrly, et al.Frontiers in Microbiology|September 6, 2014
Mitochondrial ROS potentiates indirect activation of the AIM2 inflammasomeDeborah D Crane, Timothy J Bauler, Tara D Wehrly, et al.Vaccine|April 5, 2017
Expansion and retention of pulmonary CD4+ T cells after prime boost vaccination correlates with improved longevity and strength of immunity against tularemiaLydia M Roberts, Tara D Wehrly, Deborah D Crane, et al.Clinical and Vaccine Immunology : CVI|August 9, 2013
Lipids derived from virulent Francisella tularensis broadly inhibit pulmonary inflammation via toll-like receptor 2 and peroxisome proliferator-activated receptor αDeborah D Crane, Robin Ireland, Joshua B Alinger, et al.Pageof 3