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Clinical and Vaccine Immunology : CVI|January 13, 2017
Monophosphoryl Lipid A Enhances Efficacy of a Francisella tularensis LVS-Catanionic Nanoparticle Subunit Vaccine against F. tularensis Schu S4 Challenge by Augmenting both Humoral and Cellular ImmunityKatharina Richard, Barbara J Mann, Aiping Qin, et al.Msphere|October 13, 2023
Genomic, transcriptomic, and phenotypic differences among archetype <i>Shigella flexneri</i> strains of serotypes 2a, 3a, and 6Caitlin E Gabor, Tracy H Hazen, BreOnna C Delaine-Elias, et al.Msphere|October 3, 2023
The role of the minor colonization factor CS14 in adherence to intestinal cell models by geographically diverse ETEC isolatesEmily M Smith, Antonia Papadimas, Caitlin Gabor, et al.Infection and Immunity|January 16, 2019
Evaluating Shigella flexneri Pathogenesis in the Human Enteroid ModelSridevi Ranganathan, Michele Doucet, Christen L Grassel, et al.Pathogens (Basel, Switzerland)|September 28, 2021
Evaluation of a Live Attenuated <i>S. sonnei</i> Vaccine Strain in the Human Enteroid ModelGiulia Pilla, Tao Wu, Christen Grassel, et al.Vaccine|April 17, 2009
Characterization of rationally attenuated Francisella tularensis vaccine strains that harbor deletions in the guaA and guaB genesAraceli E Santiago, Leah E Cole, Augusto Franco, et al.Nature Reviews. Gastroenterology & Hepatology|February 20, 2013
Progress and pitfalls in Shigella vaccine researchEileen M Barry, Marcela F Pasetti, Marcelo B Sztein, et al.Infection and Immunity|March 12, 2014
Live attenuated mutants of Francisella tularensis protect rabbits against aerosol challenge with a virulent type A strainDouglas S Reed, Le'kneitah P Smith, Kelly Stefano Cole, et al.Infection and Immunity|June 12, 2013
Characterization of intracellular growth regulator icgR by utilizing transcriptomics to identify mediators of pathogenesis in Shigella flexneriCarolyn R Morris, Christen L Grassel, Julia C Redman, et al.Pathogens (Basel, Switzerland)|July 2, 2021
Deletion Mutants of <i>Francisella</i> Phagosomal Transporters FptA and FptF Are Highly Attenuated for Virulence and Are Protective Against Lethal Intranasal <i>Francisella</i> LVS Challenge in a Murine Model of Respiratory TularemiaBrandi E Hobbs, Courtney A Matson, Vasileios I Theofilou, et al.Pageof 7