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.

Plos One
|January 6, 2016
PubMed

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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