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Results 11-17 of 17 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2011Pneumolysin with low hemolytic activity confers an early growth advantage to Streptococcus pneumoniae in the bloodHarvey, R.; Ogunniyi, A.; Chen, A.; Paton, J.; Camilli, A.
2013Interplay between manganese and iron in pneumococcal pathogenesis: Role of the orphan response regulator ritROng, C.; Potter, A.; Trappetti, C.; Walker, M.; Jennings, M.; Paton, J.; McEwan, A.; Payne, S.M.
2008Pneumococcal Virulence Gene Expression and Host Cytokine Profiles during Pathogenesis of Invasive DiseaseMahdi, L.; Ogunniyi, A.; Le Messurier, K.; Paton, J.
2007Contributions of pneumolysin, pneumococcal surface protein A (PspA), and PspC to pathogenicity of Streptococcus pneumoniae D39 in a mouse modelOgunniyi, A.; Le Messurier, K.; Graham, R.; Watt, J.; Briles, D.; Stroeher, U.; Paton, J.
2013Site of isolation determines biofilm formation and virulence phenotypes of streptococcus pneumoniae serotype 3 clinical isolatesTrappetti, C.; van der Maten, E.; Amin, Z.; Potter, A.; Chen, A.; van Mourik, P.; Lawrence, A.; Paton, A.; Paton, J.; Camilli, A.
2008Resistance to mucosal lysozyme compensates for the fitness deficit of peptidoglycan modifications by Streptococcus pneumoniaeDavis, K.; Akinbi, H.; Standish, A.; Weiser, J.; Gilmore, M.S.
2014Development of primary invasive pneumococcal disease caused by serotype 1 pneumococci is driven by early increased type I interferon response in the lungHughes, C.; Harvey, R.; Plumptre, C.; Paton, J.; Pirofski, L.