Regeneration Membranes Loaded with Non-Antibiotic Anti-2 Microbials: A Review

Ana Adamuz-Jiménez1, Francisco-Javier Manzano-Moreno1,2,3, Cristina Vallecillo1

  • 1Faculty of Dentistry, Colegio Máximo de Cartuja s/n, University of Granada, 18071 Granada, Spain.

Polymers
|January 11, 2024
PubMed

Insights

Regenerative membranes can be enhanced with antimicrobials like zinc, silver, chlorhexidine, and lauric acid to combat bacterial contamination and infection in guided bone and tissue regeneration procedures.

Area of Science:

  • Biomaterials Science
  • Periodontology
  • Regenerative Medicine

Background:

  • Guided bone regeneration (GBR) and guided tissue regeneration (GTR) utilize barrier membranes.
  • Surgical site contamination and infection are significant complications.
  • Functionalizing membranes with antimicrobial agents is an area of research.

Purpose of the Study:

  • To review the antibacterial properties of regenerative membranes doped with zinc, silver, chlorhexidine, and lauric acid.
  • To evaluate if these antimicrobial-doped membranes reduce infection risk compared to non-impregnated membranes.

Main Methods:

  • Systematic review following PRISMA guidelines.
  • PICO question: "Do membranes doped with non-antibiotic antimicrobials have antibacterial activity that can reduce or improve infection compared to membranes not impregnated with said antimicrobial?"
  • Methodological quality assessed using the RoBDEMAT tool.
  • Included 25 articles from an initial 329 search results.

Main Results:

  • Zinc effectively inhibits bacterial growth by reducing colony-forming units.
  • Silver compounds decrease proinflammatory cytokines and bacterial adhesion.
  • Chlorhexidine shows antimicrobial activity but can be toxic at certain concentrations.
  • Lauric acid inhibits bacterial growth, with larger inhibition zones at higher concentrations.

Conclusions:

  • Antimicrobial agents like zinc, silver, chlorhexidine, and lauric acid demonstrate effective antibacterial activity.
  • Doping regenerative membranes with these agents can reduce the risk of bacterial colonization and infection.