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Published on: December 27, 2016
Characterization of biofilm producing methicillin resistant coagulase negative Staphylococci from India
A Suneel Kumar1,2, A S Smiline Girija2, B Naga Srilatha1
11 Department of Microbiology, Rajiv Gandhi Institute of Medical Sciences (RIMS), Government Medical College & Hospital, Kadapa, Andhra Pradesh, India.
Abstract:
Methicillin-resistant coagulase-negative staphylococci (MR-CoNS) cause infectious diseases due to their potential to form biofilm and further colonization in hospital materials. This study evaluated the antibiotic susceptible phenotypes, biofilm-producing ability, and biofilm-associated genes (mecA, icaAD, bap, cna, and fnbA). Biofilm formation was detected through Congo red agar (CRA) method and MTP method. The presence of biofilm and associated genes in MR-CoNS were detected by PCR. A total of 310 (55.95%) isolates produced the biofilm. Among these isolates, Staphylococcus haemolyticus (34.83%), Staphylococcus epidermis (31.93%), Staphylococcus capitis (16.77%), Staphylococcus cohnii (10.96%), and Staphylococcus hominis (5.48%) were identified. The antimicrobial susceptibility pattern of CoNS isolates indicated resistance to cefoxitin (100%), erythromycin (94.8%), ciprofloxacin (66.7%), sulfamethoxazole/trimethoprim (66.7%), gentamicin (66.12%), and clindamycin (62.9%). Resistance rate to mupirocin was 48.5% in S. epidermidis and 38.9% in S. haemolyticus isolates. All isolates were sensitive to vancomycin and linezolid. The prevalence rates of icaAD, bap, fnbA, and cna were 18.06%, 12.5%, 47.4%, and 27.4%, respectively. icaAD and bap genes were detected in 18.06% and 12.5% of MR-CoNS isolates. fnbA and cna genes were detected in 47.41% and 27.41% of MRCoNS isolates. icaAD positive strains exhibited a significant increase in the biofilm formation compared with those that lacked icaAD (0.86 (0.42, 1.39) versus 0.36 (0.14, 0.75), respectively; P < 0.001). In conclusion, the majority of MR-CoNS isolates were biofilm producers, and S. capitis, which possessed icaAD genes, ranked as the great biofilm producer than other Staphylococcus. The study's findings are important to form a strategy to control biofilm formation as an alternative strategy to counter the spread of MR-CoNS in healthcare settings.
Insights
Most methicillin-resistant coagulase-negative staphylococci (MR-CoNS) form biofilms, aiding hospital infections. Staphylococcus capitis with icaAD genes showed significant biofilm production, highlighting a target for controlling MR-CoNS spread.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Methicillin-resistant coagulase-negative staphylococci (MR-CoNS) are significant nosocomial pathogens.
- Their ability to form biofilms contributes to persistent infections and colonization of medical devices.
- Understanding biofilm formation and associated genes is crucial for infection control.
Purpose of the Study:
- To evaluate antibiotic susceptibility, biofilm production, and prevalence of biofilm-associated genes in MR-CoNS.
- To identify specific MR-CoNS species and genes linked to enhanced biofilm formation.
- To inform strategies for combating MR-CoNS infections in healthcare settings.
Main Methods:
- Phenotypic detection of biofilm formation using Congo red agar and microtiter plate assays.
- Molecular detection of biofilm-associated genes (mecA, icaAD, bap, cna, fnbA) via PCR.
- Antimicrobial susceptibility testing against various antibiotics.
Main Results:
- Over 55% of MR-CoNS isolates were biofilm producers, with Staphylococcus haemolyticus and Staphylococcus epidermidis being most common.
- High resistance rates were observed for cefoxitin, erythromycin, and ciprofloxacin.
- The icaAD genes were significantly associated with increased biofilm formation, particularly in Staphylococcus capitis.
Conclusions:
- The majority of clinical MR-CoNS isolates exhibit biofilm-producing capabilities.
- Staphylococcus capitis strains carrying icaAD genes demonstrate superior biofilm formation.
- Targeting biofilm formation, especially via the icaAD genes, presents a viable strategy to control MR-CoNS in hospitals.
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