Related Experiment Video
Updated: Jun 21, 2026

Subcutaneous Infection of Methicillin Resistant Staphylococcus Aureus (MRSA)
Published on: February 9, 2011
Staphylococcus aureus Panton-Valentine leukocidin contributes to inflammation and muscle tissue injury
Ching Wen Tseng1, Pierre Kyme, Jennifer Low
1Division of Pediatric Infectious Diseases and the Immunobiology Research Institute, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
Abstract:
Community-associated methicillin-resistant Staphylococcus aureus (CA-MRSA) threatens public health worldwide, and epidemiologic data suggest that the Panton-Valentine Leukocidin (PVL) expressed by most CA-MRSA strains could contribute to severe human infections, particularly in young and immunocompetent hosts. PVL is proposed to induce cytolysis or apoptosis of phagocytes. However, recent comparisons of isogenic CA-MRSA strains with or without PVL have revealed no differences in human PMN cytolytic activity. Furthermore, many of the mouse studies performed to date have failed to demonstrate a virulence role for PVL, thereby provoking the question: does PVL have a mechanistic role in human infection? In this report, we evaluated the contribution of PVL to severe skin and soft tissue infection. We generated PVL mutants in CA-MRSA strains isolated from patients with necrotizing fasciitis and used these tools to evaluate the pathogenic role of PVL in vivo. In a model of necrotizing soft tissue infection, we found PVL caused significant damage of muscle but not the skin. Muscle injury was linked to induction of pro-inflammatory chemokines KC, MIP-2, and RANTES, and recruitment of neutrophils. Tissue damage was most prominent in young mice and in those strains of mice that more effectively cleared S. aureus, and was not significant in older mice and mouse strains that had a more limited immune response to the pathogen. PVL mediated injury could be blocked by pretreatment with anti-PVL antibodies. Our data provide new insights into CA-MRSA pathogenesis, epidemiology and therapeutics. PVL could contribute to the increased incidence of myositis in CA-MRSA infection, and the toxin could mediate tissue injury by mechanisms other than direct killing of phagocytes.
Insights
Panton-Valentine Leukocidin (PVL) from community-associated MRSA causes muscle damage in infections, not skin injury. This toxin
Area of Science:
- Microbiology
- Infectious Diseases
- Toxicology
Background:
- Community-associated methicillin-resistant Staphylococcus aureus (CA-MRSA) is a global health concern.
- The Panton-Valentine Leukocidin (PVL) toxin is implicated in severe CA-MRSA infections, particularly in young hosts.
- Previous studies yielded conflicting results on PVL's role in phagocyte lysis and virulence.
Purpose of the Study:
- To investigate the specific contribution of PVL to severe skin and soft tissue infections caused by CA-MRSA.
- To elucidate the in vivo pathogenic mechanisms of PVL in a relevant infection model.
Main Methods:
- Generated PVL mutants in CA-MRSA strains from necrotizing fasciitis patients.
- Evaluated PVL's role in a mouse model of necrotizing soft tissue infection.
- Assessed muscle and skin damage, inflammatory responses, and the effect of anti-PVL antibodies.
Main Results:
- PVL significantly damaged muscle tissue but not skin in the necrotizing soft tissue infection model.
- Muscle injury was associated with increased pro-inflammatory chemokines and neutrophil recruitment.
- Tissue damage was more pronounced in younger mice and those with stronger immune responses; it was blocked by anti-PVL antibodies.
Conclusions:
- PVL contributes to muscle injury (myositis) in CA-MRSA infections.
- PVL-mediated tissue damage occurs through mechanisms beyond direct phagocyte killing.
- Findings offer insights into CA-MRSA pathogenesis, epidemiology, and potential therapeutic strategies targeting PVL.
Related Concept Videos
Acute Inflammation III: Local and Systemic Effects
Inflammation
Staphylococcal Skin Infections
Determinants of Bacterial Pathogenicity and Virulence
Inflammatory Response
Inflammation can be triggered by various stimuli, such as impact, abrasion, chemical irritation, infections, and extreme hot or cold temperatures. These can damage cells and connective tissue fibers,...
Inflammatory Response I: Vascular and Cellular
