Published in Vaccine on August 30, 2008
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Lipid A's structure mediates Neisseria gonorrhoeae fitness during experimental infection of mice and men. MBio (2013) 0.99
A strain-specific catalase mutation and mutation of the metal-binding transporter gene mntC attenuate Neisseria gonorrhoeae in vivo but not by increasing susceptibility to oxidative killing by phagocytes. Infect Immun (2008) 0.98
Opacity proteins increase Neisseria gonorrhoeae fitness in the female genital tract due to a factor under ovarian control. Infect Immun (2010) 0.95
Protective role of Toll-like receptor 4 in experimental gonococcal infection of female mice. Mucosal Immunol (2011) 0.94
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Functional characterization of antibodies against Neisseria gonorrhoeae opacity protein loops. PLoS One (2009) 0.88
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Impact of fluoroquinolone resistance mutations on gonococcal fitness and in vivo selection for compensatory mutations. J Infect Dis (2012) 1.83
A prospective study to evaluate the impact of FDG-PET on CT-based radiotherapy treatment planning for oesophageal cancer. Radiother Oncol (2006) 1.73
Clinically relevant mutations that cause derepression of the Neisseria gonorrhoeae MtrC-MtrD-MtrE Efflux pump system confer different levels of antimicrobial resistance and in vivo fitness. Mol Microbiol (2008) 1.61
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Mouse strain-dependent differences in susceptibility to Neisseria gonorrhoeae infection and induction of innate immune responses. Infect Immun (2009) 1.24
Human C4b-binding protein selectively interacts with Neisseria gonorrhoeae and results in species-specific infection. Proc Natl Acad Sci U S A (2005) 1.20
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A novel mechanism of high-level, broad-spectrum antibiotic resistance caused by a single base pair change in Neisseria gonorrhoeae. MBio (2011) 1.14
Neisseria gonorrhoeae catalase is not required for experimental genital tract infection despite the induction of a localized neutrophil response. Infect Immun (2007) 1.05
Alpha-2,3-sialyltransferase enhances Neisseria gonorrhoeae survival during experimental murine genital tract infection. Infect Immun (2006) 1.04
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Lactate acquisition promotes successful colonization of the murine genital tract by Neisseria gonorrhoeae. Infect Immun (2006) 0.99
Lipid A's structure mediates Neisseria gonorrhoeae fitness during experimental infection of mice and men. MBio (2013) 0.99
A Neisseria gonorrhoeae catalase mutant is more sensitive to hydrogen peroxide and paraquat, an inducer of toxic oxygen radicals. Microb Pathog (2004) 0.98
A strain-specific catalase mutation and mutation of the metal-binding transporter gene mntC attenuate Neisseria gonorrhoeae in vivo but not by increasing susceptibility to oxidative killing by phagocytes. Infect Immun (2008) 0.98
Identification of a new OmpA-like protein in Neisseria gonorrhoeae involved in the binding to human epithelial cells and in vivo colonization. Mol Microbiol (2007) 0.97
Opacity proteins increase Neisseria gonorrhoeae fitness in the female genital tract due to a factor under ovarian control. Infect Immun (2010) 0.95
In vivo selection for Neisseria gonorrhoeae opacity protein expression in the absence of human carcinoembryonic antigen cell adhesion molecules. Infect Immun (2006) 0.91
Phosphoethanolamine decoration of Neisseria gonorrhoeae lipid A plays a dual immunostimulatory and protective role during experimental genital tract infection. Infect Immun (2014) 0.91
Functional characterization of antibodies against Neisseria gonorrhoeae opacity protein loops. PLoS One (2009) 0.88
Hydrogen peroxide-producing lactobacilli inhibit gonococci in vitro but not during experimental genital tract infection. J Infect Dis (2009) 0.83
Chlamydial infection increases gonococcal colonization in a novel murine coinfection model. Infect Immun (2011) 0.82
The natural history of incident gonococcal infection in adolescent women: similar observations in a female mouse model of gonococcal and chlamydial coinfection. Sex Transm Dis (2012) 0.76
Evaluating theory-based evaluation: information, norms, and adherence. Eval Program Plann (2011) 0.76
Expanded sexually transmitted infection surveillance efforts in the United States military: a time for action. Mil Med (2013) 0.75