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Plos One|August 6, 2014
Cryptococcus neoformans hyperfilamentous strain is hypervirulent in a murine model of cryptococcal meningoencephalitisMarianna Feretzaki, Sarah E Hardison, Floyd L Wormley, et al.
Mycopathologia|December 7, 2011
Induction of protective immunity against cryptococcosisKaren L Wozniak, Sarah Hardison, Michal Olszewski, et al.
Infection and Immunity|November 24, 2004
The calcineurin target, Crz1, functions in azole tolerance but is not required for virulence of Candida albicansChiatogu Onyewu, Floyd L Wormley, John R Perfect, et al.
Scientific Reports|October 18, 2012
Mechanisms of dendritic cell lysosomal killing of CryptococcusCamaron R Hole, Hoang Bui, Floyd L Wormley, et al.
Infection and Immunity|January 11, 2007
Protection against cryptococcosis by using a murine gamma interferon-producing Cryptococcus neoformans strainFloyd L Wormley, John R Perfect, Chad Steele, et al.
Infection and Immunity|October 6, 2010
Interleukin-17 is not required for classical macrophage activation in a pulmonary mouse model of Cryptococcus neoformans infectionSarah E Hardison, Karen L Wozniak, Jay K Kolls, et al.
Plos One|March 2, 2011
Role of IL-17A on resolution of pulmonary C. neoformans infectionKaren L Wozniak, Sarah E Hardison, Jay K Kolls, et al.
Proteomics|October 31, 2013
Identification and characterization of Cryptococcus neoformans protein fractions that induce protective immune responsesAshok K Chaturvedi, Susan T Weintraub, Jose L Lopez-Ribot, et al.
Frontiers in Microbiology|February 24, 2016
Cryptococcus and Phagocytes: Complex Interactions that Influence Disease OutcomeChrissy M Leopold Wager, Camaron R Hole, Karen L Wozniak, et al.
Biology of Sex Differences|September 4, 2019
An inherent T cell deficit in healthy males to C. neoformans infection may begin to explain the sex susceptibility in incidence of cryptococcosisTiffany E Guess, Joseph Rosen, Natalia Castro-Lopez, et al.
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