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Molecular Comparison of Bacterial Communities on Peripheral Intravenous Catheters and Matched Skin Swabs
Md Abu Choudhury1,2,3, Nicole Marsh1,2,4, Shahera Banu5
1NHMRC Centre of Research Excellence in Nursing (NCREN), Menzies Health Institute Queensland, Griffith University, Brisbane, Australia.
Abstract:
Skin bacteria at peripheral intravenous catheter (PIVC) insertion sites pose a serious risk of microbial migration and subsequent colonisation of PIVCs, and the development of catheter related bloodstream infections (CRBSIs). Common skin bacteria are often associated with CRBSIs, therefore the bacterial communities at PIVC skin sites are likely to have major implications for PIVC colonisation. This study aimed to determine the bacterial community structures on skin at PIVC insertion sites and to compare the diversity with associated PIVCs. A total of 10 PIVC skin site swabs and matching PIVC tips were collected by a research nurse from 10 hospitalised medical/surgical patients at catheter removal. All swabs and PIVCs underwent traditional culture and high-throughput sequencing. The bacterial communities on PIVC skin swabs and matching PIVCs were diverse and significantly associated (correlation coefficient = 0.7, p<0.001). Methylobacterium spp. was the dominant genus in all PIVC tip samples, but not so for skin swabs. Sixty-one percent of all reads from the PIVC tips and 36% of all reads from the skin swabs belonged to this genus. Staphylococcus spp., (26%), Pseudomonas spp., (10%) and Acinetobacter spp. (10%) were detected from skin swabs but not from PIVC tips. Most skin associated bacteria commonly associated with CRBSIs were observed on skin sites, but not on PIVCs. Diverse bacterial communities were observed at skin sites despite skin decolonization at PIVC insertion. The positive association of skin and PIVC tip communities provides further evidence that skin is a major source of PIVC colonisation via bacterial migration but microbes present may be different to those traditionally identified via culture methods. The results provide new insights into the colonisation of catheters and potential pathogenesis of bacteria associated with CRBSI, and may assist in developing new strategies designed to reduce the risk of CRBSI.
Insights
Skin bacteria near peripheral intravenous catheters (PIVCs) can lead to catheter-related bloodstream infections (CRBSIs). This study found skin and PIVC bacterial communities are linked, though specific microbes differ, offering insights for CRBSI prevention.
Area of Science:
- Microbiology
- Infectious Diseases
- Medical Devices
Background:
- Peripheral intravenous catheters (PIVCs) are prone to bacterial colonization from insertion sites, increasing the risk of catheter-related bloodstream infections (CRBSIs).
- Understanding the skin's bacterial community structure at PIVC sites is crucial for identifying sources of PIVC colonization and CRBSI pathogenesis.
Purpose of the Study:
- To determine the bacterial community structures on skin at PIVC insertion sites.
- To compare the diversity of skin bacterial communities with those found on the associated PIVCs.
Main Methods:
- Collected PIVC skin site swabs and matching PIVC tips from 10 patients.
- Utilized both traditional culture and high-throughput sequencing for bacterial analysis.
Main Results:
- A significant association was found between bacterial communities on PIVC skin swabs and matching PIVC tips (correlation coefficient = 0.7, p<0.001).
- Methylobacterium spp. dominated PIVC tips, while Staphylococcus spp., Pseudomonas spp., and Acinetobacter spp. were more prevalent on skin sites.
- Diverse skin bacterial communities were present even after skin decolonization procedures.
Conclusions:
- Skin is a major source of PIVC colonization, with bacterial migration playing a key role.
- The specific microbes colonizing PIVCs may differ from those traditionally identified by culture methods.
- Findings provide new insights into PIVC colonization and CRBSI pathogenesis, aiding in the development of novel prevention strategies.
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