Related Experiment Video
Updated: May 19, 2026

Experimental Endocarditis Model of Methicillin Resistant Staphylococcus aureus (MRSA) in Rat
Published on: June 4, 2012
Comparison of Staphylococcus aureus strains for ability to cause infective endocarditis and lethal sepsis in rabbits
Adam R Spaulding1, Erin A Satterwhite, Ying-Chi Lin
1Department of Microbiology, Carver College of Medicine, University of Iowa, Iowa City IA, USA.
Abstract:
Staphylococcus aureus is a major cause of infective endocarditis (IE) and sepsis. Both methicillin-resistant (MRSA) and methicillin-sensitive (MSSA) strains cause these illnesses. Common S. aureus strains include pulsed-field gel electrophoresis (PFGE) types USA200, 300, and 400 types where we hypothesize that secreted virulence factors contribute to both IE and sepsis. Rabbit cardiac physiology is considered similar to humans, and rabbits exhibit susceptibility to S. aureus superantigens (SAgs) and cytolysins. As such, rabbits are an excellent model for studying IE and sepsis, which over the course of four days develop IE vegetations and/or fatal septicemia. We examined the ability of MRSA and MSSA strains (4 USA200, 2 USA300, 2 USA400, and three additional common strains, FRI1169, Newman, and COL) to cause vegetations and lethal sepsis in rabbits. USA200, TSST-1(+) strains that produce only low amounts of α-toxin, exhibited modest LD(50) in sepsis (1 × 10(8) - 5 × 10(8)) colony-forming units (CFUs), and 3/4 caused significant IE. USA200 strain MNPE, which produces high-levels of α-toxin, was both highly lethal (LD(50) 5 × 10(6) CFUs) and effective in causing IE. In contrast, USA300 strains were highly effective in causing lethal sepsis (LD(50)s 1 × 10(6) and 5 × 10(7) CFUs) but were minimally capable of causing IE. Strain Newman, which is phylogenetically related to USA300 strains, was not highly lethal (LD(50) of 2 × 10(9) CFUs) and was effective in causing IE. USA400 strains were both highly lethal (LD(50)s of 1 × 10(7) and 5 × 10(7) CFUs) and highly effective causes of IE. The menstrual TSS isolate FRI1169, that is TSST-1(+), produces high-levels of α-toxin, but is not USA200, was both highly lethal and effective in causing IE. Additional studies showed that phenol soluble modulins (PSMs) produced by FRI1169 were important for sepsis but did not contribute to IE. Our studies show that these clonal groups of S. aureus differ in abilities to cause IE and lethal sepsis and suggest that secreted virulence factors, including SAgs and cytolysins, account for some of these differences.
Insights
Staphylococcus aureus strains vary in their ability to cause infective endocarditis and sepsis. Virulence factors like superantigens and cytolysins contribute to these differences, impacting disease severity and outcomes.
Area of Science:
- Microbiology
- Infectious Diseases
- Pathogenesis
Background:
- Staphylococcus aureus is a leading cause of infective endocarditis (IE) and sepsis.
- Both methicillin-resistant (MRSA) and methicillin-sensitive (MSSA) strains are implicated.
- Specific clonal groups and their secreted virulence factors are hypothesized to influence disease development.
Purpose of the Study:
- To investigate the differential abilities of various Staphylococcus aureus strains to cause IE and lethal sepsis in a rabbit model.
- To explore the role of secreted virulence factors, such as superantigens (SAgs) and cytolysins, in disease pathogenesis.
Main Methods:
- Utilized a rabbit model, known for cardiac physiology similarity to humans and susceptibility to S. aureus toxins.
- Inoculated rabbits with different MRSA and MSSA strains (USA200, USA300, USA400, FRI1169, Newman, COL).
- Assessed the development of IE vegetations and determined lethal sepsis median lethal dose (LD50) values.
Main Results:
- USA200 strains showed variable IE and modest sepsis lethality, with high alpha-toxin production correlating with increased virulence.
- USA300 strains were highly lethal in sepsis but minimally caused IE.
- USA400 strains and the FRI1169 isolate were highly effective in causing both lethal sepsis and IE.
- Phenol soluble modulins (PSMs) were crucial for sepsis but not IE in the FRI1169 strain.
Conclusions:
- Distinct Staphylococcus aureus clonal groups exhibit significant differences in their capacity to induce IE and lethal sepsis.
- Secreted virulence factors, including SAgs and cytolysins, play a critical role in mediating these observed variations in disease presentation and severity.
- The rabbit model effectively recapitulates key aspects of S. aureus-induced IE and sepsis, facilitating the study of strain-specific virulence.
More Related Videos
Related Concept Videos
Clinical Significance of Antibiotic Resistance
Endocarditis I: Introduction
Staphylococcal Skin Infections

