Physiochemical properties and resorption progress of porcine skin-derived collagen membranes: In vitro and in vivo analysis

Dent Mater J. 2018 Mar 30;37(2):332-340. doi: 10.4012/dmj.2017-065. Epub 2017 Dec 8.

Abstract

The aim of the present study was to evaluate the physiochemical properties and resorption progress of two cross-linked, porcine skin-derived collagen membranes and compare their features with those of a membrane without cross-linking (Bio-Gide® [BG], Geistlich Biomaterials, Wolhusen, Switzerland). Three porcine skin-derived collagen membranes, dehydrothermally (DHT) cross-linked (experimental), DHT and 1-ethyl-3(3-dimethylaminopropyl)-carbodiimide (DHT/EDC) cross-linked (experimental) and BG were investigated for their morphology, enzyme resistance, and tensile strength in vitro and biodegradation in vivo. DHT and DHT/EDC membranes exhibited irregular, interconnected macro- and micropores that formed a 3D mesh, whereas BG exhibited individual collagen fibrils interlaced to form coarse collagen strands. In enzyme resistance and tensile strength tests, DHT and DHT/EDC membranes demonstrated good resistance and mechanical properties compared with BG. In vivo, all three membranes were well integrated into the surrounding connective tissue. Thus, the DHT membrane exhibited its potential as a barrier membrane for guided bone and tissue regeneration.

Keywords: Animal study; Biodegradation; Carbodiimide; Collagen; Dehydrothermal.

MeSH terms

  • Absorbable Implants
  • Animals
  • Biocompatible Materials / chemistry*
  • Collagen / analysis
  • Collagen / chemistry*
  • Cross-Linking Reagents / chemistry*
  • Guided Tissue Regeneration / instrumentation
  • Materials Testing
  • Membranes, Artificial*
  • Models, Animal
  • Protein Denaturation
  • Rats
  • Swine
  • Tensile Strength

Substances

  • Bio-Gide
  • Biocompatible Materials
  • Cross-Linking Reagents
  • Membranes, Artificial
  • Collagen