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Short Peripheral Venous Catheters Contamination and the Dangers of Bloodstream Infection in Portugal: An Analytic
Nádia Osório1,2, Vânia Oliveira1,3, Maria Inês Costa1
1Polytechnic Institute of Coimbra, Coimbra Health School, 3046-854 Coimbra, Portugal.
Abstract:
Peripheral venous catheters (PVCs) are the most used vascular access devices in the world. However, failure rates remain considerably high, with complications such as PVC-related infections posing significant threats to patients' well-being. In Portugal, studies evaluating the contamination of these vascular medical devices and characterizing the associated microorganisms are scarce and lack insight into potential virulence factors. To address this gap, we analyzed 110 PVC tips collected in a large tertiary hospital in Portugal. Experiments followed Maki et al.'s semi-quantitative method for microbiological diagnosis. Staphylococcus spp. were subsequently studied for the antimicrobial susceptibility profile by disc diffusion method and based on the cefoxitin phenotype, were further classified into strains resistant to methicillin. Screening for the mecA gene was also done by a polymerase chain reaction and minimum inhibitory concentration (MIC)-vancomycin as determined by E-test, proteolytic and hemolytic activity on skimmed milk 1% plate and blood agar, respectively. The biofilm formation was evaluated on microplate reading through iodonitrotetrazolium chloride 95% (INT). Overall, 30% of PVCs were contaminated, and the most prevalent genus was Staphylococcus spp., 48.8%. This genus presented resistance to penicillin (91%), erythromycin (82%), ciprofloxacin (64%), and cefoxitin (59%). Thus, 59% of strains were considered resistant to methicillin; however, we detected the mecA gene in 82% of the isolates tested. Regarding the virulence factors, 36.4% presented α-hemolysis and 22.7% β-hemolysis, 63.6% presented a positive result for the production of proteases, and 63.6% presented a biofilm formation capacity. Nearly 36.4% were simultaneously resistant to methicillin and showed expression of proteases and/or hemolysins, biofilm formation, and the MIC to vancomycin were greater than 2 µg/mL. Conclusion: PVCs were mainly contaminated with Staphylococcus spp., with high pathogenicity and resistance to antibiotics. The production of virulence factors strengthens the attachment and the permanence to the catheter's lumen. Quality improvement initiatives are needed to mitigate such results and enhance the quality and safety of the care provided in this field.
Insights
Peripheral venous catheters (PVCs) in Portugal showed significant contamination with Staphylococcus species, exhibiting high antibiotic resistance and virulence factors. These findings highlight the need for improved quality and safety in patient care.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Vascular Access Devices
Background:
- Peripheral venous catheters (PVCs) are essential but prone to high failure rates and infections.
- Limited data exists in Portugal on PVC contamination, microbial characterization, and virulence factors.
Purpose of the Study:
- To analyze the contamination of PVC tips in a Portuguese hospital.
- To characterize the isolated microorganisms, focusing on Staphylococcus species.
- To investigate antimicrobial resistance and virulence factors of the isolates.
Main Methods:
- Analysis of 110 PVC tips using Maki et al.'s semi-quantitative method.
- Antimicrobial susceptibility testing (disc diffusion, cefoxitin phenotype, vancomycin MIC).
- Detection of the mecA gene via PCR, and assessment of proteolytic, hemolytic, and biofilm-forming activities.
Main Results:
- 30% of PVCs were contaminated, predominantly by Staphylococcus spp. (48.8%).
- High resistance rates observed for penicillin (91%), erythromycin (82%), ciprofloxacin (64%), and cefoxitin (59%).
- 59% of strains were methicillin-resistant, with 82% testing positive for the mecA gene; significant virulence factors (hemolysis, proteases, biofilm) were detected.
Conclusions:
- PVCs in this Portuguese hospital are frequently contaminated with pathogenic Staphylococcus species.
- High rates of antibiotic resistance and the presence of virulence factors contribute to catheter-related complications.
- Enhanced quality improvement initiatives are crucial to improve patient safety and care quality.
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