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Microbiological pattern of arterial catheters in the intensive care unit
Li Zhang1, Kadaba S Sriprakash, David McMillan
1Research Centre for Clinical and Community Practice Innovation, Griffith University, Brisbane, QLD, Australia. li.zhang@griffith.edu.au
Background:
Intravascular catheter related infection (CRI) is one of the most serious nosocomial infections. Diagnostic criteria include a positive culture from the catheter tip along with blood, yet in many patients with signs of infection, current culture techniques fail to identify pathogens on catheter segments. We hypothesised that a molecular examination of the bacterial community on short term arterial catheters (ACs) would improve our understanding of the variety of organisms that are present in this niche environment and would help develop new methods for the diagnosis of CRI.
Results:
The whole bacterial community presenting on all ACs was evaluated by molecular methods, i.e., a strategy of whole community DNA extraction, PCR amplification followed by cloning and 16S rDNA sequence analysis. Ten ACs were removed from patients suspected of CRI and 430 clones from 5 "colonised" and 5 "uncolonised" (semi-quantitative method) AC libraries were selected for sequencing and subsequent analysis. A total of 79 operational taxonomic units (OTUs) were identified at the level of 97% similarity belonging to six bacterial divisions. An average of 20 OTUs were present in each AC, irrespective of colonisation status. Conventional culture failed to reveal the majority of these bacteria.
Conclusions:
There was no significant difference in the bacterial diversity between the 'uncolonised' and 'colonised' ACs. This suggests that vascular devices cultured conventionally and reported as non infective may at times potentially be a significant source of sepsis in critically ill patients. Alternative methods may be required for the accurate diagnosis of CRI in critically ill patients.
Insights
Molecular analysis revealed diverse bacteria on arterial catheters (ACs), even in non-infected cases. Current methods miss many pathogens, suggesting ACs may cause sepsis, necessitating improved diagnostic tools for catheter-related infections (CRI).
Area of Science:
- Microbiology
- Infectious Diseases
- Medical Diagnostics
Background:
- Catheter-related infections (CRIs) are severe hospital-acquired infections.
- Current diagnostic methods, relying on catheter tip cultures, often fail to detect pathogens in patients with suspected CRI.
- Arterial catheters (ACs) are a common source of CRIs.
Purpose of the Study:
- To investigate the bacterial community on short-term arterial catheters (ACs) using molecular methods.
- To compare bacterial diversity in 'colonised' versus 'uncolonised' ACs.
- To identify limitations of conventional culture techniques in diagnosing CRI.
Main Methods:
- DNA extraction from ACs, followed by PCR amplification and 16S rDNA sequencing.
- Analysis of 430 clones from 10 ACs (5 colonised, 5 uncolonised).
- Identification of operational taxonomic units (OTUs) at 97% similarity.
Main Results:
- A total of 79 OTUs from six bacterial divisions were identified across all ACs.
- An average of 20 OTUs were present on each AC, regardless of colonisation status.
- Conventional culture methods failed to detect the majority of identified bacteria.
Conclusions:
- No significant difference in bacterial diversity was observed between 'colonised' and 'uncolonised' ACs.
- Arterial catheters cultured conventionally as non-infective may still contribute to sepsis.
- Advanced molecular diagnostic methods are needed for accurate CRI diagnosis in critically ill patients.
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