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Lower Density and Shorter Duration of Nasopharyngeal Carriage by Pneumococcal Serotype 1 (ST217) May Explain Its Increased Invasiveness over Other Serotypes
Journal article   Peer reviewed

Lower Density and Shorter Duration of Nasopharyngeal Carriage by Pneumococcal Serotype 1 (ST217) May Explain Its Increased Invasiveness over Other Serotypes

Laura Bricio-Moreno, Chrispin Chaguza, Reham Yahya, Rebecca K Shears, Jennifer E Cornick, Karsten Hokamp, Marie Yang, Daniel R Neill, Neil French, Jay C D Hinton, …
mBio, Vol.11(6), pp.1-15
08/12/2020
PMID: 33293378

Abstract

Animals Carrier State - microbiology Cytokines - metabolism Disease Models, Animal Gene Expression Regulation, Bacterial Host-Pathogen Interactions Humans Inflammation Mediators - metabolism Mice Microbial Viability Nasopharynx - microbiology Pneumococcal Infections - metabolism Pneumococcal Infections - microbiology Serogroup Streptococcus pneumoniae - classification Streptococcus pneumoniae - genetics Streptococcus pneumoniae - pathogenicity Time Factors Virulence

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