Impact of catheter insertion using the radial approach on vasodilatation in humans

Ellen A Dawson1, Sudhir Rathore, N Timothy Cable

  • 1Research Institute for Sport and Exercise Sciences, Liverpool John Moores University, Liverpool L3 2ET, UK. e.dawson@ljmu.ac.uk

Insights

Catheter sheath insertion temporarily reduces flow-mediated dilatation (FMD) and nitric oxide (NO)-mediated function in the radial artery. However, vascular function, including FMD, recovers within three months, suggesting an endothelium-independent component to FMD.

Area of Science:

  • Cardiovascular Physiology
  • Endothelial Function Research
  • Vascular Biology

Background:

  • Endothelial disruption from catheter sheath insertion is a human model for studying vascular response.
  • Flow-mediated dilatation (FMD) assesses endothelial function, relying on nitric oxide (NO) release.
  • Transradial catheterization provides a unique opportunity to study acute and chronic vascular changes.

Purpose of the Study:

  • To determine the impact of catheter sheath insertion on radial artery FMD in vivo.
  • To assess changes in endothelium-dependent and independent NO-mediated function following catheterization.
  • To investigate the recovery of vascular function after sheath removal.

Main Methods:

  • Seventeen subjects undergoing transradial catheterization were assessed before, immediately after, and 3-4 months post-procedure.
  • Radial artery FMD and glyceryl trinitrate (GTN)-mediated function were measured in both arms.
  • Measurements were taken at the sheath site, catheter site, and distally, with the non-catheterized arm serving as a control.

Main Results:

  • Catheter sheath insertion significantly reduced FMD from baseline (9.0% to 4.5% at sheath site) and GTN responses (14.8% to 7.9%).
  • These reductions were temporary, with FMD and GTN responses returning to baseline levels by 3 months post-catheterization.
  • No complete abolition of FMD was observed, despite significant endothelial disruption likely caused by sheath placement.

Conclusions:

  • Catheter sheath insertion causes transient impairment of endothelial-dependent and independent vasodilation.
  • The FMD response may involve mechanisms independent of a fully intact endothelium and nitric oxide release.
  • Radial artery vascular function demonstrates significant recovery within three months following transradial catheterization.