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Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
Detection of mecA Genes in Hospital-Acquired MRSA and SOSA Strains Associated with Biofilm Formation
Rosa González-Vázquez1,2, María Guadalupe Córdova-Espinoza1,2,3, Alejandro Escamilla-Gutiérrez1,4
1Laboratorio de Bacteriologia Medica, Departamento de Microbiologia, Escuela Nacional de Ciencias Biologicas, Instituto Politecnico Nacional, Prolongacion de Carpio y Plan de Ayala S/N, Col. Casco de Santo Tomas, Alcaldia Miguel Hidalgo, Mexico City 11340, Mexico.
Abstract:
Methicillin-resistant (MR) Staphylococcus aureus (SA) and others, except for Staphylococcus aureus (SOSA), are common in healthcare-associated infections. SOSA encompass largely coagulase-negative staphylococci, including coagulase-positive staphylococcal species. Biofilm formation is encoded by the icaADBC operon and is involved in virulence. mecA encodes an additional penicillin-binding protein (PBP), PBP2a, that avoids the arrival of β-lactams at the target, found in the staphylococcal cassette chromosome mec (SCCmec). This work aims to detect mecA, the bap gene, the icaADBC operon, and types of SCCmec associated to biofilm in MRSA and SOSA strains. A total of 46% (37/80) of the strains were S. aureus, 44% (35/80) S. epidermidis, 5% (4/80) S. haemolyticus, 2.5% (2/80) S. hominis, 1.25% (1/80) S. intermedius, and 1.25% (1/80) S. saprophyticus. A total of 85% were MR, of which 95.5% showed mecA and 86.7% β-lactamase producers; thus, Staphylococcus may have more than one resistance mechanism. Healthcare-associated infection strains codified type I-III genes of SCCmec; types IV and V were associated to community-acquired strains (CA). Type II prevailed in MRSA mecA strains and type II and III in MRSOSA (methicillin-resistant staphylococci other than Staphylococcus aureus). The operon icaADBC was found in 24% of SA and 14% of SOSA; probably the arrangement of the operon, fork formation, and mutations influenced the variation. Methicillin resistance was mainly mediated by the mecA gene; however, there may be other mechanisms that also participate, since biofilm production is related to genes of the icaADBC operon and methicillin resistance was not associated with biofilm production. Therefore, it is necessary to strengthen surveillance to prevent the spread of these outbreaks both in the nosocomial environment and in the community.
Insights
Methicillin resistance in Staphylococcus strains is often linked to the mecA gene and SCCmec types, but biofilm formation via the icaADBC operon may involve other mechanisms. Enhanced surveillance is crucial for controlling MRSA and SOSA outbreaks in healthcare and community settings.
Area of Science:
- Microbiology
- Infectious Diseases
- Molecular Biology
Background:
- Methicillin-resistant (MR) Staphylococcus aureus (SA) and other staphylococci (SOSA) are significant causes of healthcare-associated infections.
- Biofilm formation, mediated by the icaADBC operon, is a key virulence factor.
- The mecA gene, located on the staphylococcal cassette chromosome mec (SCCmec), confers methicillin resistance by encoding PBP2a.
Purpose of the Study:
- To detect the presence of mecA, bap gene, and icaADBC operon.
- To characterize SCCmec types associated with biofilm formation in MRSA and SOSA strains.
- To investigate the relationship between methicillin resistance, biofilm production, and specific staphylococcal species.
Main Methods:
- Molecular detection of specific genes (mecA, bap, icaADBC) and SCCmec typing.
- Analysis of a collection of 80 staphylococcal strains, including S. aureus and other staphylococci (SOSA).
- Correlation of genotypic findings with methicillin resistance and biofilm production.
Main Results:
- 85% of strains were methicillin-resistant (MR), with 95.5% harboring the mecA gene.
- SCCmec types I-III were associated with healthcare-associated infections, while types IV and V were linked to community-acquired strains.
- The icaADBC operon was present in 24% of SA and 14% of SOSA; methicillin resistance was not directly associated with biofilm production.
Conclusions:
- Methicillin resistance is primarily mediated by the mecA gene, but other resistance mechanisms may exist.
- Different SCCmec types are associated with healthcare- versus community-acquired infections.
- Strengthened surveillance is essential to prevent the spread of MRSA and SOSA in both nosocomial and community settings.
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