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Frontiers in Microbiology|November 12, 2016
Systemic Approach to Virulence Gene Network Analysis for Gaining New Insight into Cryptococcal VirulenceAntoni N Malachowski, Mohamed Yosri, Goun Park, et al.Journal of Immunology (Baltimore, Md. : 1950)|October 18, 2017
Anti-PD-1 Antibody Treatment Promotes Clearance of Persistent Cryptococcal Lung Infection in MiceJonathan A Roussey, Steven P Viglianti, Seagal Teitz-Tennenbaum, et al.Pathogens and Disease|April 30, 2021
The growing repertoire of genetic tools for dissecting chlamydial pathogenesisArkaprabha Banerjee, David E NelsonThe Journal of Biological Chemistry|March 8, 2011
A Competitive binding mechanism between Skp1 and exportin 1 (CRM1) controls the localization of a subset of F-box proteinsDavid E Nelson, Heike LamanInfection and Immunity|May 28, 2015
Chlamydia muridarum infection of macrophages elicits bactericidal nitric oxide production via reactive oxygen species and cathepsin BKrithika Rajaram, David E NelsonWomen & Health|July 7, 2007
Reporter sex and newspaper coverage of the adverse health effects of hormone therapyDavid E Nelson, Nancy SignorielliJournal of Immunology (Baltimore, Md. : 1950)|September 10, 2014
STAT1 signaling is essential for protection against Cryptococcus neoformans infection in miceChrissy M Leopold Wager, Camaron R Hole, Karen L Wozniak, et al.Infection and Immunity|March 9, 2011
Effect of cytokine interplay on macrophage polarization during chronic pulmonary infection with Cryptococcus neoformansShikha Arora, Michal A Olszewski, Tiffany M Tsang, et al.Mbio|February 13, 2024
Batf3-dependent orchestration of the robust Th1 responses and fungal control during cryptococcal infection, the role of cDC1Jintao Xu, Rylan Hissong, Rachel Bareis, et al.Infection and Immunity|April 9, 2008
Inheritance of immune polarization patterns is linked to resistance versus susceptibility to Cryptococcus neoformans in a mouse modelGwo-hsiao Chen, David A McNamara, Yadira Hernandez, et al.Pageof 22