Related Experiment Video
Updated: Feb 12, 2026

Development and Assessment of Intracellular Infection Models for Staphylococcus aureus
Published on: January 17, 2025
Virulence Factor Genes in Staphylococcus aureus Isolated From Diabetic Foot Soft Tissue and Bone Infections
Gerardo Víquez-Molina1, Javier Aragón-Sánchez2, Cristian Pérez-Corrales3
11 San Juan de Dios Hospital, San José de Costa Rica, Costa Rica.
Abstract:
The aim of this study is to describe the presence of genes encoding for 4 virulence factors (pvl, eta, etb, and tsst), as well as the mecA gene conferring resistance to beta-lactam antibiotics, in patients with diabetes and a staphylococcal foot infection. We have also analyzed whether isolates of Staphylococcus aureus from bone infections have a different profile for these genes compared with those from exclusively soft tissue infections. In this cross-sectional study of a prospectively recruited series of patients admitted to the Diabetic Foot Unit, San Juan de Dios Hospital, San José, Costa Rica with a moderate or severe diabetic foot infection (DFI), we collected samples from infected soft tissue and from bone during debridement. During the study period (June 1, 2014 to May 31, 2016), we treated 379 patients for a DFI. S aureus was isolated from 101 wound samples, of which 43 were polymicrobial infections; we only included the 58 infections that were monomicrobial S aureus for this study. Infections were exclusively soft tissue in 17 patients (29.3%) while 41 (70.7%) had bone involvement (osteomyelitis). The mecA gene was detected in 35 cases (60.3%), pvl gene in 4 cases (6.9%), and tsst gene in 3 (5.2%). We did not detect etA and etB in any of the cases. There were no differences in the profile of S aureus genes encoding for virulence factors (pvl, etA, etB, and tsst) recovered from DFIs between those with just soft tissue compared to those with osteomyelitis. However, we found a significantly higher prevalence of pvl+ strains of S aureus associated with soft tissue compared with bone infections. Furthermore, we observed a significantly longer time to healing among patients infected with mecA+ (methicillin-resistant) S aureus (MRSA).
Insights
This study found methicillin-resistant Staphylococcus aureus (MRSA) infections in diabetic foot infections lead to longer healing times. While virulence factors like pvl were more common in soft tissue infections, MRSA significantly delayed healing.
Area of Science:
- Microbiology
- Infectious Diseases
- Diabetic Foot Care
Background:
- Diabetic foot infections (DFIs) are a significant complication, often caused by Staphylococcus aureus.
- Understanding virulence factors and antibiotic resistance in DFI pathogens is crucial for effective treatment.
- Strains of Staphylococcus aureus carry genes for virulence factors (pvl, eta, etb, tsst) and antibiotic resistance (mecA).
Purpose of the Study:
- To identify virulence and antibiotic resistance genes in Staphylococcus aureus from diabetic foot infections.
- To compare gene profiles between soft tissue and bone infections.
- To assess the impact of these genes on DFI healing time.
Main Methods:
- Prospective cross-sectional study of 379 DFI patients over two years.
- Collected samples from soft tissue and bone during debridement for monomicrobial S. aureus infections (n=58).
- Used PCR to detect mecA, pvl, eta, etb, and tsst genes; analyzed healing times.
Main Results:
- mecA gene (MRSA) detected in 60.3% of S. aureus isolates.
- pvl gene found in 6.9%, tsst in 5.2%; eta and etb were absent.
- pvl+ S. aureus strains were more prevalent in soft tissue infections than bone infections.
- Patients with mecA+ (MRSA) infections had significantly longer healing times.
Conclusions:
- The prevalence of specific virulence and resistance genes varies in S. aureus causing DFIs.
- While pvl is associated with soft tissue infections, mecA (MRSA) significantly prolongs DFI healing.
- Targeting MRSA and understanding virulence factors are key to improving DFI outcomes.
Related Concept Videos
Factors Affecting the Risk of Infection
The integrity and count of the white blood cells help the body resist pathogens and fight infection. When impaired, it reduces the body's resistance to pathogens. The acidic pH levels of the gastrointestinal, genitourinary tracts, and skin...
Bone Cells and Tissue
Osteoblasts and Osteocytes
The osteoblast is the bone cell responsible for forming new bone tissue. It is found in the growing portions of bone, including the...
Hormones and Bone Tissue
Hormones That Influence Osteoblasts and/or Maintain the Matrix
Several hormones are necessary for controlling bone growth and maintaining the bone matrix. The pituitary gland secretes growth hormone (GH), which, as its name implies, controls bone growth. This happens in several ways: first, it triggers chondrocyte...
Muscles of the Leg that Move the Foot and Toes
Anterior Compartment
The anterior compartment includes muscles that contribute to the dorsiflexion of the foot. This compartment houses the tibialis anterior, extensor hallucis longus, and extensor digitorum longus muscles....
Bone as Supporting Connective Tissue
Bone Matrix
Bone, or osseous tissue, is a connective tissue that has a large amount of two different types of matrix material. The organic matrix is similar to the matrix material found in other connective tissues, including some amount of collagen and elastic fibers. This gives strength and flexibility to the tissue. The inorganic matrix consists of mineral salts— mostly calcium salts—...
Growth of Cartilage and Bone Tissue

