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Surfactant Protein D Binds to Coxiella burnetii and Results in a Decrease  in Interactions with Murine Alveolar Macrophages | PLOS ONE
Surfactant Protein D Binds to Coxiella burnetii and Results in a Decrease in Interactions with Murine Alveolar Macrophages | PLOS ONE

Evidence that WapB Is a 1,2-Glucosyltransferase of Pseudomonas aeruginosa  Involved in Lipopolysaccharide Outer Core Biosynthesis | Journal of  Bacteriology
Evidence that WapB Is a 1,2-Glucosyltransferase of Pseudomonas aeruginosa Involved in Lipopolysaccharide Outer Core Biosynthesis | Journal of Bacteriology

Frontiers | Recent Advances on the Innate Immune Response to Coxiella  burnetii
Frontiers | Recent Advances on the Innate Immune Response to Coxiella burnetii

Plasminogen activator inhibitor 1 is not a major causative factor for  exacerbation in a mouse model of SARS-CoV-2 infection | Scientific Reports
Plasminogen activator inhibitor 1 is not a major causative factor for exacerbation in a mouse model of SARS-CoV-2 infection | Scientific Reports

SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect
SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect

Strategic Moves of “Superbugs” Against Available Chemical Scaffolds:  Signaling, Regulation, and Challenges | ACS Pharmacology & Translational  Science
Strategic Moves of “Superbugs” Against Available Chemical Scaffolds: Signaling, Regulation, and Challenges | ACS Pharmacology & Translational Science

Truncation in the core oligosaccharide of lipopolysaccharide affects  flagella-mediated motility in Pseudomonas aeruginosa PAO1 v
Truncation in the core oligosaccharide of lipopolysaccharide affects flagella-mediated motility in Pseudomonas aeruginosa PAO1 v

Lipopolysaccharide of Coxiella burnetii | SpringerLink
Lipopolysaccharide of Coxiella burnetii | SpringerLink

Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation  | PLOS Pathogens
Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation | PLOS Pathogens

β-Barrel proteins tether the outer membrane in many Gram-negative bacteria  | Nature Microbiology
β-Barrel proteins tether the outer membrane in many Gram-negative bacteria | Nature Microbiology

SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect
SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect

Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation  | PLOS Pathogens
Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation | PLOS Pathogens

Abrogation of Plasminogen Activator Inhibitor-1-Vitronectin Interaction  Ameliorates Acute Kidney Injury in Murine Endotoxemia | PLOS ONE
Abrogation of Plasminogen Activator Inhibitor-1-Vitronectin Interaction Ameliorates Acute Kidney Injury in Murine Endotoxemia | PLOS ONE

Truncation in the core oligosaccharide of lipopolysaccharide affects  flagella-mediated motility in Pseudomonas aeruginosa PAO1 v
Truncation in the core oligosaccharide of lipopolysaccharide affects flagella-mediated motility in Pseudomonas aeruginosa PAO1 v

Lipopolysaccharide of Coxiella burnetii | SpringerLink
Lipopolysaccharide of Coxiella burnetii | SpringerLink

Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation  | PLOS Pathogens
Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation | PLOS Pathogens

SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect
SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect

Tentative chemical structure of lipids A from C. burnetii strains... |  Download Scientific Diagram
Tentative chemical structure of lipids A from C. burnetii strains... | Download Scientific Diagram

SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect
SOCS-1 Participates in Negative Regulation of LPS Responses - ScienceDirect

Strategic Moves of “Superbugs” Against Available Chemical Scaffolds:  Signaling, Regulation, and Challenges | ACS Pharmacology & Translational  Science
Strategic Moves of “Superbugs” Against Available Chemical Scaffolds: Signaling, Regulation, and Challenges | ACS Pharmacology & Translational Science

Lipopolysaccharide of Coxiella burnetii | SpringerLink
Lipopolysaccharide of Coxiella burnetii | SpringerLink

Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation  | PLOS Pathogens
Genetic mechanisms of Coxiella burnetii lipopolysaccharide phase variation | PLOS Pathogens