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A Mouse Model to Assess Innate Immune Response to Staphylococcus aureus Infection
Published on: February 28, 2019
Biomaterial-associated staphylococcal peritoneal infections in a neutropaenic mouse model
1Department of Infectious Biology, University of Lodz, Poland.
Abstract:
Adhesion of staphylococcal cells to polyethylene with end point-attached heparin was quantified by bioluminescence. Staphylococcus epidermidis 3380 and the slime-producing S. epidermidis RP12 adhered to the highest extent, and S. lugdunensis 2342 to the least extent. Preincubation of the polymer with dialysis fluid reduced adhesion of S. epidermidis 3380 and RP12 but enhanced that of S. aureus, and preadsorption of the surface with fibronectin decreased subsequent adhesion of S. epidermidis and S. haemolyticus strains. When staphylococci were grown in the presence of a biomaterial their ability to activate peritoneal cells was decreased. The bactericidal activity was impaired, whereas ingestion of opsonized coagulase-negative staphylococci (CNS) strains was unaffected. With S. epidermidis RP12 the presence of biomaterial did not influence either phagocytosis or bactericidal effect of peritoneal cells. After intra-peritoneal challenge with staphylococcal strains, the organ uptake of S. aureus Cowan 1 was increased in normal mice whereas immunosuppressed mice died. CNS strains increased mainly in the peritoneal cavity of immunosuppressed mice. The uptake of bacteria in liver and kidneys was increased with S. epidermidis 3380, S. lugdunensis 2343 and S. schleiferi 667-88. Generally, CNS strains persisted in the peritoneal cavity of both normal and immunosuppressed mice. These data indicate that host defense mechanisms, mainly polymorphonuclear neutrophils, fail to eliminate CNS infections in the peritoneum, and that initial adhesion to an implanted biomaterial may be of lesser importance in the peritoneal cavity than in e.g. catheter-associated infections. There are strain-specific virulence factors of bacteria, and slime producing strains evade the host defense mechanisms more efficiently than non-slime producing strains.
Insights
Staphylococcal adhesion to biomaterials varies by strain. Slime-producing strains and those grown with biomaterials show altered host defense interactions, impacting infection outcomes, especially in immunosuppressed individuals.
Area of Science:
- Microbiology
- Immunology
- Biomaterials Science
Background:
- Staphylococcal infections are a significant concern, particularly in relation to biomaterial implants.
- Understanding bacterial adhesion and host immune response is crucial for managing biomaterial-associated infections.
- Coagulase-negative staphylococci (CNS) are common culprits in such infections.
Purpose of the Study:
- To investigate the adhesion of various staphylococcal strains to heparin-coated polyethylene.
- To evaluate the impact of biomaterial presence on staphylococcal virulence and host immune cell activation.
- To determine the role of bacterial strain characteristics and host immune status in infection outcomes.
Main Methods:
- Quantification of staphylococcal cell adhesion to heparinized polyethylene using bioluminescence.
- Assessment of staphylococcal interaction with peritoneal cells (activation, phagocytosis, bactericidal effects).
- In vivo studies involving intra-peritoneal challenge in normal and immunosuppressed mice to assess organ uptake and survival.
Main Results:
- Significant strain-specific differences in adhesion were observed, with Staphylococcus epidermidis RP12 showing high adhesion.
- Biomaterial presence reduced staphylococcal activation of peritoneal cells and impaired bactericidal activity.
- Slime-producing strains demonstrated enhanced evasion of host defenses, leading to increased persistence, particularly in immunosuppressed mice.
Conclusions:
- Host defense mechanisms, including neutrophils, are insufficient to clear CNS peritoneal infections.
- Bacterial strain virulence factors, especially slime production, play a critical role in evading host defenses.
- In the peritoneal cavity, bacterial strain virulence may be more important than initial biomaterial adhesion for infection establishment.

