Subinhibitory Concentrations of Azithromycin Decrease Nontypeable Haemophilus influenzae Biofilm Formation and Diminish Established Biofilms
Starner et al.
Antimicrob. Agents Chemother. 2008;52:137-145.
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MUC2 Expression in Human Middle Ear Epithelium of Patients With Otitis Media
Ubell et al.
Arch Otolaryngol Head Neck Surg 2008;134:39-44.
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Comparative Genomic Analyses of Seventeen Streptococcus pneumoniae Strains: Insights into the Pneumococcal Supragenome
Hiller et al.
J. Bacteriol. 2007;189:8186-8195.
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Multiple Consecutive Lavage Samplings Reveal Greater Burden of Disease and Provide Direct Access to the Nontypeable Haemophilus influenzae Biofilm in Experimental Otitis Media
Leroy et al.
Infect. Immun. 2007;75:4158-4172.
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Pseudomonas aeruginosa Forms Biofilms in Acute Infection Independent of Cell-to-Cell Signaling
Schaber et al.
Infect. Immun. 2007;75:3715-3721.
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Biofilms Formed by Nontypeable Haemophilus influenzae In Vivo Contain both Double-Stranded DNA and Type IV Pilin Protein
Jurcisek and Bakaletz
J. Bacteriol. 2007;189:3868-3875.
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Phosphorylcholine Decreases Early Inflammation and Promotes the Establishment of Stable Biofilm Communities of Nontypeable Haemophilus influenzae Strain 86-028NP in a Chinchilla Model of Otitis Media
Hong et al.
Infect. Immun. 2007;75:958-965.
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Demonstration of Bacterial Cells and Glycocalyx in Biofilms on Human Tonsils
Kania et al.
Arch Otolaryngol Head Neck Surg 2007;133:115-121.
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Characterization of In Vitro Biofilm-Associated Pneumococcal Phase Variants of a Clinically Relevant Serotype 3 Clone
McEllistrem et al.
J. Clin. Microbiol. 2007;45:97-101.
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Identification of a Bifunctional Lipopolysaccharide Sialyltransferase in Haemophilus influenzae: INCORPORATION OF DISIALIC ACID
Fox et al.
J. Biol. Chem. 2006;281:40024-40032.
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Extensive Genomic Plasticity in Pseudomonas aeruginosa Revealed by Identification and Distribution Studies of Novel Genes among Clinical Isolates
Shen et al.
Infect. Immun. 2006;74:5272-5283.
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Haemophilus influenzae Forms Biofilms on Airway Epithelia: Implications in Cystic Fibrosis
Starner et al.
Am. J. Respir. Crit. Care Med. 2006;174:213-220.
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Direct detection of bacterial biofilms on the middle-ear mucosa of children with chronic otitis media.
Hall-Stoodley et al.
JAMA 2006;296:202-211.
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Phenotypic Characterization of Streptococcus pneumoniae Biofilm Development.
Allegrucci et al.
J. Bacteriol. 2006;188:2325-2335.
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Biofilm Formation by Moraxella catarrhalis In Vitro: Roles of the UspA1 Adhesin and the Hag Hemagglutinin
Pearson et al.
Infect. Immun. 2006;74:1588-1596.
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Biofilm Growth Increases Phosphorylcholine Content and Decreases Potency of Nontypeable Haemophilus influenzae Endotoxins
West-Barnette et al.
Infect. Immun. 2006;74:1828-1836.
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Characterization, Distribution, and Expression of Novel Genes among Eight Clinical Isolates of Streptococcus pneumoniae
Shen et al.
Infect. Immun. 2006;74:321-330.
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Characterization of Temporal Protein Production in Pseudomonas aeruginosa Biofilms
Southey-Pillig et al.
J. Bacteriol. 2005;187:8114-8126.
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Otopathogenic Pseudomonas aeruginosa Strains as Competent Biofilm Formers
Wang et al.
Arch Otolaryngol Head Neck Surg 2005;131:983-989.
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Genetic Relatedness between Pneumococcal Populations Originating from the Nasopharynx, Adenoid, and Tympanic Cavity of Children with Otitis Media
Tonnaer et al.
J. Clin. Microbiol. 2005;43:3140-3144.
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Role of Sialic Acid and Complex Carbohydrate Biosynthesis in Biofilm Formation by Nontypeable Haemophilus influenzae in the Chinchilla Middle Ear
Jurcisek et al.
Infect. Immun. 2005;73:3210-3218.
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Identification, Distribution, and Expression of Novel Genes in 10 Clinical Isolates of Nontypeable Haemophilus influenzae
Shen et al.
Infect. Immun. 2005;73:3479-3491.
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Demonstration of Type IV Pilus Expression and a Twitching Phenotype by Haemophilus influenzae
Bakaletz et al.
Infect. Immun. 2005;73:1635-1643.
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A Three-Component Regulatory System Regulates Biofilm Maturation and Type III Secretion in Pseudomonas aeruginosa
Kuchma et al.
J. Bacteriol. 2005;187:1441-1454.
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Chinchilla Middle Ear Epithelial Mucin Gene Expression in Response to Inflammatory Cytokines
Kerschner et al.
Arch Otolaryngol Head Neck Surg 2004;130:1163-1167.
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Nontypeable Haemophilus influenzae Strain 2019 Produces a Biofilm Containing N-Acetylneuraminic Acid That May Mimic Sialylated O-Linked Glycans
Greiner et al.
Infect. Immun. 2004;72:4249-4260.
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Effect of Antibiotic Treatment Delay on Therapeutic Outcome of Experimental Acute Otitis Media Caused by Streptococcus pneumoniae Strains with Different Susceptibilities to Amoxicillin
Parra et al.
Antimicrob. Agents Chemother. 2004;48:860-866.
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Bacterial Biofilm Presence in Pediatric Tracheotomy Tubes
Perkins et al.
Arch Otolaryngol Head Neck Surg 2004;130:339-343.
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Sialylation of Lipooligosaccharides Promotes Biofilm Formation by Nontypeable Haemophilus influenzae
Swords et al.
Infect. Immun. 2004;72:106-113.
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Nontypeable Haemophilus influenzae Gene Expression Induced In Vivo in a Chinchilla Model of Otitis Media
Mason et al.
Infect. Immun. 2003;71:3454-3462.
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Anatomical Evidence of Microbial Biofilms in Tonsillar Tissues: A Possible Mechanism to Explain Chronicity
Chole and Faddis
Arch Otolaryngol Head Neck Surg 2003;129:634-636.
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Chromosomal Expression of the Haemophilus influenzae Hap Autotransporter Allows Fine-Tuned Regulation of Adhesive Potential via Inhibition of Intermolecular Autoproteolysis
Fink and St. Geme III
J. Bacteriol. 2003;185:1608-1615.
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Basic Science and Translational Research in JAMA
Fontanarosa and DeAngelis
JAMA 2002;287:1728-1728.
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