Improving hemocompatibility of decellularized vascular tissue by structural modification of collagen fiber

Int J Biol Macromol. 2024 Jun;269(Pt 1):132040. doi: 10.1016/j.ijbiomac.2024.132040. Epub 2024 May 1.

Abstract

Decellularized vascular tissue has high potential as a tissue-engineered vascular graft because of its similarity to native vessels in terms of mechanical strength. However, exposed collagen on the tissue induces blood coagulation, and low hemocompatibility is a major obstacle to its vascular application. Here we report that freeze-drying and ethanol treatment effectively modify collagen fiber structure and drastically reduce blood coagulation on the graft surface without exogenous chemical modification. Decellularized carotid artery of ostrich was treated with freeze-drying and ethanol solution at concentrations ranging between 5 and 99.5 %. Collagen fiber distance in the graft was narrowed by freeze-drying, and the non-helical region increased by ethanol treatment. Although in vitro blood coagulation pattern was similar on the grafts, platelet adhesion on the grafts was largely suppressed by freeze-drying and ethanol treatments. Ex vivo blood circulation tests also indicated that the adsorption of platelets and Von Willebrand Factor was largely reduced to approximately 80 % by ethanol treatment. These results indicate that structural modification of collagen fibers in decellularized tissue reduces blood coagulation on the surface by inhibiting platelet adhesion.

Keywords: Blood coagulation; Collagen fiber; Decellularized vascular tissue; Ethanol treatment; Hemocompatibility; Structural modification.

MeSH terms

  • Animals
  • Biocompatible Materials / chemistry
  • Biocompatible Materials / pharmacology
  • Blood Coagulation* / drug effects
  • Blood Platelets / chemistry
  • Blood Platelets / metabolism
  • Blood Vessel Prosthesis
  • Carotid Arteries / drug effects
  • Collagen* / chemistry
  • Ethanol / chemistry
  • Freeze Drying
  • Humans
  • Materials Testing
  • Platelet Adhesiveness* / drug effects
  • Tissue Engineering / methods
  • Tissue Scaffolds / chemistry

Substances

  • Collagen
  • Biocompatible Materials
  • Ethanol