Thrombosis of angiographic catheters in humans: experimental study

A L Bailly1, A Lautier, A Laurent

  • 1Laboratory of Neuroradiology and Therapeutic Angiography, Claude Bernard Research Fund, Paris, France.

Insights

Catheter thrombogenicity, a risk for blood clots, was studied in 31 patients. Smoother catheter surfaces showed higher thrombogenicity, regardless of material composition, highlighting surface texture as a key factor.

Area of Science:

  • Biomaterials Science
  • Medical Device Engineering
  • Clinical Research

Background:

  • Catheter use poses a thrombogenicity risk, potentially causing embolization and severe damage.
  • Understanding catheter-induced clot formation is crucial for patient safety during procedures like angiography.

Purpose of the Study:

  • To evaluate the thrombogenicity of commercially available catheters in a human clinical setting.
  • To correlate catheter surface properties with their tendency to cause blood clot formation and occlusion.

Main Methods:

  • Five different catheter types were tested in 31 patients undergoing angiographic procedures.
  • Blood flow rate (BFR) was monitored for 15 minutes, and catheters were characterized using surface analysis techniques (roughness, FTIR, DSC, ESCA).

Main Results:

  • Catheter occlusion occurred in 44% of cases, with an average time to occlusion of 8.5 minutes.
  • Smoother catheter surfaces exhibited higher thrombogenicity; however, no correlation was found between chemical composition and thrombogenicity.
  • Polyethylene (PE)-based catheters appeared less thrombogenic than Polyamide (PA) catheters in this study.

Conclusions:

  • Surface roughness is a significant factor in catheter thrombogenicity, more so than material composition.
  • Catheter thrombotic behavior can be classified into three types based on blood flow rate changes.
  • Further research into surface modification could mitigate thrombogenicity risks associated with medical catheters.

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