Role of the Bordetella pertussis minor fimbrial subunit, FimD, in colonization of the mouse respiratory tract
about
Molecular pathogenesis, epidemiology, and clinical manifestations of respiratory infections due to Bordetella pertussis and other Bordetella subspecies.The Bordetella pertussis model of exquisite gene control by the global transcription factor BvgAPertussis: Microbiology, Disease, Treatment, and Prevention.Identification and characterization of heparin binding regions of the Fim2 subunit of Bordetella pertussisFilamentous hemagglutinin of Bordetella bronchiseptica is required for efficient establishment of tracheal colonizationCell adhesion molecules in the pathogenesis of and host defence against microbial infection.Role of antibodies against Bordetella pertussis virulence factors in adherence of Bordetella pertussis and Bordetella parapertussis to human bronchial epithelial cells.Role of Bordetella pertussis virulence factors in adherence to epithelial cell lines derived from the human respiratory tractRole of Bordetella bronchiseptica fimbriae in tracheal colonization and development of a humoral immune response.FHA-mediated cell-substrate and cell-cell adhesions are critical for Bordetella pertussis biofilm formation on abiotic surfaces and in the mouse nose and the trachea.The Bps polysaccharide of Bordetella pertussis promotes colonization and biofilm formation in the nose by functioning as an adhesinBordetella pertussis pathogenesis: current and future challenges.Unexpected similarities between Bordetella avium and other pathogenic BordetellaeGenetic analysis of Bordetella pertussis isolates from the 2008-2010 pertussis epidemic in Japan.The Bordetella avium BAV1965-1962 fimbrial locus is regulated by temperature and produces fimbriae involved in adherence to turkey tracheal tissue.Bordetella filamentous hemagglutinin and fimbriae: critical adhesins with unrealized vaccine potential.Highly differentiated human airway epithelial cells: a model to study host cell-parasite interactions in pertussis.Bordetella pertussis virulence factors affect phagocytosis by human neutrophils.Genome Structural Diversity among 31 Bordetella pertussis Isolates from Two Recent U.S. Whooping Cough Statewide Epidemics.Comparison of the genome sequence of the poultry pathogen Bordetella avium with those of B. bronchiseptica, B. pertussis, and B. parapertussis reveals extensive diversity in surface structures associated with host interaction.A role for lipopolysaccharide in turkey tracheal colonization by Bordetella avium as demonstrated in vivo and in vitro.
P2860
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P2860
Role of the Bordetella pertussis minor fimbrial subunit, FimD, in colonization of the mouse respiratory tract
description
1997 nî lūn-bûn
@nan
1997年の論文
@ja
1997年論文
@yue
1997年論文
@zh-hant
1997年論文
@zh-hk
1997年論文
@zh-mo
1997年論文
@zh-tw
1997年论文
@wuu
1997年论文
@zh
1997年论文
@zh-cn
name
Role of the Bordetella pertuss ...... of the mouse respiratory tract
@ast
Role of the Bordetella pertuss ...... of the mouse respiratory tract
@en
type
label
Role of the Bordetella pertuss ...... of the mouse respiratory tract
@ast
Role of the Bordetella pertuss ...... of the mouse respiratory tract
@en
prefLabel
Role of the Bordetella pertuss ...... of the mouse respiratory tract
@ast
Role of the Bordetella pertuss ...... of the mouse respiratory tract
@en
P2093
P2860
P1476
Role of the Bordetella pertuss ...... of the mouse respiratory tract
@en
P2093
P2860
P304
P407
P50
P577
1997-10-01T00:00:00Z