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Guided Bone Regeneration Using Barrier Membrane in Dental Applications

  • Stony Brook University
  • Columbia University

Research output: Contribution to journalReview articlepeer-review

63 Scopus citations

Abstract

Guided bone regeneration (GBR) is a widely used technique in preclinical and clinical studies due to its predictability. Its main purpose is to prevent the migration of soft tissue into the osseous wound space, while allowing osseous cells to migrate to the site. GBR is classified into two main categories: resorbable and non-resorbable membranes. Resorbable membranes do not require a second surgery but tend to have a short resorption period. Conversely, non-resorbable membranes maintain their mechanical strength and prevent collapse. However, they require removal and are susceptible to membrane exposure. GBR is often used with bone substitute graft materials to fill the defect space and protect the bone graft. The membrane can also undergo various modifications, such as surface modification and biological factor loading, to improve barrier functions and bone regeneration. In addition, bone regeneration is largely related to osteoimmunology, a new field that focuses on the interactions between bone and the immune system. Understanding these interactions can help in developing new treatments for bone diseases and injuries. Overall, GBR has the potential to be a powerful tool in promoting bone regeneration. Further research in this area could lead to advancements in the field of bone healing. This review will highlight resorbable and non-resorbable membranes with cellular responses during bone regeneration, provide insights into immunological response during bone remodeling, and discuss antibacterial features.

Original languageEnglish
Pages (from-to)5457-5478
Number of pages22
JournalACS Biomaterials Science and Engineering
Volume9
Issue number10
DOIs
StatePublished - Oct 9 2023

Keywords

  • Guided tissue regeneration
  • barrier membrane
  • osseoimmunology
  • osteogenesis
  • periodontal disease

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