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.

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.

Related Concept Videos

Staphylococcal Skin Infections01:29

Staphylococcal Skin Infections

Staphylococcus aureus is a Gram-positive coccus that resides harmlessly on the skin and mucous membranes of healthy individuals. When the skin barrier is breached, it can shift from a commensal to an opportunistic pathogen. This transition is facilitated by surface adhesins, such as clumping factor B and S. aureus surface protein G (SasG), which bind to structural proteins, including loricrin and cytokeratin, in the damaged epidermis. Protein A, another key factor, binds the Fc region of...
Clinical Significance of Antibiotic Resistance01:25

Clinical Significance of Antibiotic Resistance

Methicillin-resistant Staphylococcus aureus (MRSA) presents a critical public health threat, arising from its capacity to resist β-lactam antibiotics due to acquisition of the mecA gene within the staphylococcal cassette chromosome mec (SCCmec). This gene encodes penicillin-binding protein 2a (PBP2a), which impairs binding efficacy of methicillin and other β-lactams. MRSA has evolved into distinct clonal lineages impacting humans and animals alike, reinforcing its significance within the One...
Adherens Junctions01:24

Adherens Junctions

Strong contact points between adjacent cells anchor them to each other, forming tissues. Such anchoring junctions are of two types –  adherens junctions and desmosomes. Adherens junctions are abundant in tissues such as  epithelium and endothelium, forming a continuous zone of adhesion called the adhesion belt. In other tissues, such as  heart muscle, they appear as clusters, linking the cells to produce coordinated heart muscle contraction.
Adherens Junctions are Dynamic
The endothelial cells...
Immunoglobulin-like Cell Adhesion Molecules01:31

Immunoglobulin-like Cell Adhesion Molecules

Immunoglobulin-like cell adhesion molecules or Ig-CAMs are a versatile group of cell surface glycoproteins belonging to the immunoglobulin protein superfamily. Ig-CAMs possess the characteristic immunoglobulin protein domains and other domains such as the fibronectin type III domain. The Ig domains are glycosylated to varying degrees in different Ig-CAMs.
Ig-CAMs exhibit either homophilic binding (to other Ig-CAMs) or heterophilic binding (to other ligands such as integrins). While most Ig-CAMs...