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Detection of the intercellular adhesion gene cluster (ica) in clinical Staphylococcus aureus isolates
Amirmorteza Ebrahimzadeh Namvar1, Babak Asghari, Fatemeh Ezzatifar
1Medical Microbiology Department, Antimicrobial Resistance Research Center, Faculty of Medicine, Iran University of Medical Science, Tehran, Iran.
Abstract:
Staphylococcus aureus is a major hospital and community pathogen having the aptitude to cause a wide variety of infections in men. The ability of microorganisms to produce biofilm facilitates them to withstand the host immune response and is recognized as one factor contributing to chronic or persistent infections. It was demonstrated that the ica-encoded genes lead to the biosynthesis of polysaccharide intercellular adhesion (PIA) molecules, and may be involved in the accumulation phase of biofilm formation. Different studies have shown the decisive role of the ica gene as virulence factors in staphylococcal infections. This study was carried out to demonstrate the relationship between ica gene and production of slime layer in S. aureus strains. Sixty S. aureus strains were isolated from patients. The isolates were identified morphologically and biochemically following standard laboratory methods. After identification, the staphylococcal isolates were maintained in trypticase soy broth (TSB), to which 15% glycerol was added, and stored at -20°C. Slime formation and biofilm assay was monitored. A PCR assay was developed to identify the presence of icaD (intercellular adhesion gene) gene in all isolates. Thirty-nine slime producing colonies with CRA plates (65%) formed black colors, the remaining 21 isolates were pink (35%). In the quantitative biofilm assay 35 (58%) produced biofilm while 25 (42%) isolates did not exhibit this property. All isolates were positive for detection of icaD gene by PCR method. The interaction of icaA and icaD in the investigated isolates may be important in slime layer formation and biofilm phenomena. We propose PCR detection of the ica gene locus as a rapid and effective method to be used for discrimination between potentially virulent and nonvirulent isolates, with implications for therapeutic and preventive measures pertainin to the management of colonized indwelling catheters.
Insights
The intercellular adhesion (ica) gene D was detected in all Staphylococcus aureus strains, correlating with slime production and biofilm formation. PCR detection of the ica gene offers a rapid method to identify virulent strains.
Area of Science:
- Microbiology
- Molecular Biology
- Infectious Diseases
Background:
- Staphylococcus aureus is a significant pathogen causing diverse infections.
- Biofilm formation by microorganisms enhances resistance to host defenses and contributes to persistent infections.
- The ica-encoded genes are crucial for polysaccharide intercellular adhesion (PIA) biosynthesis and biofilm development.
Purpose of the Study:
- To investigate the relationship between the ica gene and slime layer production in Staphylococcus aureus strains.
- To assess the prevalence of biofilm formation in clinical isolates of S. aureus.
- To evaluate the utility of PCR for detecting the icaD gene as a marker for virulence.
Main Methods:
- Isolation and identification of 60 Staphylococcus aureus strains from patients.
- Morphological and biochemical characterization of isolates.
- Slime formation assay using Congo Red Agar (CRA) plates.
- Quantitative biofilm assay.
- Polymerase Chain Reaction (PCR) to detect the icaD gene.
Main Results:
- 39 isolates (65%) showed slime production on CRA plates, forming black colonies.
- 35 isolates (58%) exhibited biofilm formation in quantitative assays.
- All 60 isolates tested positive for the icaD gene via PCR.
- A strong correlation was observed between icaD gene presence, slime production, and biofilm formation.
Conclusions:
- The icaD gene is a significant factor in slime layer formation and biofilm production in Staphylococcus aureus.
- PCR detection of the ica gene locus is a rapid and effective method for discriminating potentially virulent S. aureus strains.
- These findings have implications for managing S. aureus infections, particularly in patients with indwelling catheters.
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