Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Zn-Containing Membranes for Guided Bone Regeneration in Dentistry

View through CrossRef
Barrier membranes are employed in guided bone regeneration (GBR) to facilitate bone in-growth. A bioactive and biomimetic Zn-doped membrane with the ability to participate in bone healing and regeneration is necessary. The aim of the present study is to state the effect of doping the membranes for GBR with zinc compounds in the improvement of bone regeneration. A literature search was conducted using electronic databases, such as PubMed, MEDLINE, DIMDI, Embase, Scopus and Web of Science. A narrative exploratory review was undertaken, focusing on the antibacterial effects, physicochemical and biological properties of Zn-loaded membranes. Bioactivity, bone formation and cytotoxicity were analyzed. Microstructure and mechanical properties of these membranes were also determined. Zn-doped membranes have inhibited in vivo and in vitro bacterial colonization. Zn-alloy and Zn-doped membranes attained good biocompatibility and were found to be non-toxic to cells. The Zn-doped matrices showed feasible mechanical properties, such as flexibility, strength, complex modulus and tan delta. Zn incorporation in polymeric membranes provided the highest regenerative efficiency for bone healing in experimental animals, potentiating osteogenesis, angiogenesis, biological activity and a balanced remodeling. Zn-loaded membranes doped with SiO2 nanoparticles have performed as bioactive modulators provoking an M2 macrophage increase and are a potential biomaterial for promoting bone repair. Zn-doped membranes have promoted pro-healing phenotypes.
Title: Zn-Containing Membranes for Guided Bone Regeneration in Dentistry
Description:
Barrier membranes are employed in guided bone regeneration (GBR) to facilitate bone in-growth.
A bioactive and biomimetic Zn-doped membrane with the ability to participate in bone healing and regeneration is necessary.
The aim of the present study is to state the effect of doping the membranes for GBR with zinc compounds in the improvement of bone regeneration.
A literature search was conducted using electronic databases, such as PubMed, MEDLINE, DIMDI, Embase, Scopus and Web of Science.
A narrative exploratory review was undertaken, focusing on the antibacterial effects, physicochemical and biological properties of Zn-loaded membranes.
Bioactivity, bone formation and cytotoxicity were analyzed.
Microstructure and mechanical properties of these membranes were also determined.
Zn-doped membranes have inhibited in vivo and in vitro bacterial colonization.
Zn-alloy and Zn-doped membranes attained good biocompatibility and were found to be non-toxic to cells.
The Zn-doped matrices showed feasible mechanical properties, such as flexibility, strength, complex modulus and tan delta.
Zn incorporation in polymeric membranes provided the highest regenerative efficiency for bone healing in experimental animals, potentiating osteogenesis, angiogenesis, biological activity and a balanced remodeling.
Zn-loaded membranes doped with SiO2 nanoparticles have performed as bioactive modulators provoking an M2 macrophage increase and are a potential biomaterial for promoting bone repair.
Zn-doped membranes have promoted pro-healing phenotypes.

Related Results

Poster 107: The Use of Coacervate Sustained Release System to Identify the Most Potent BMP for Bone Regeneration
Poster 107: The Use of Coacervate Sustained Release System to Identify the Most Potent BMP for Bone Regeneration
Objectives: Bone morphogenetic proteins (BMPs) belong to the transforming growth factor superfamily that were first discovered by Marshall Urist. There are 14 BMPs identified to da...
The irradiated human mandible
The irradiated human mandible
Mandibular bone is known to be susceptible to irradiation damage, especially when radiation dose exceeds 50 Gy. This can result in compromised wound healing and ultimately osteorad...
Profiled Ion-Exchange Membranes for Reverse and Conventional Electrodialysis
Profiled Ion-Exchange Membranes for Reverse and Conventional Electrodialysis
Profiled ion-exchange membranes are promising for improving the parameters of reverse electrodialysis due to the reduction of pumping power and electrical resistance. The smooth co...
Porous Nanomaterials Targeting Autophagy in Bone Regeneration
Porous Nanomaterials Targeting Autophagy in Bone Regeneration
Porous nanomaterials (PNMs) are nanosized materials with specially designed porous structures that have been widely used in the bone tissue engineering field due to the fact of the...
PRF in modern dentistry: An innovative approach to oro-dental tissue regeneration
PRF in modern dentistry: An innovative approach to oro-dental tissue regeneration
In this study we will follow the use of PRF membranes in modern dentistry and implantology. We will explore the role, importance and specific techniques of using PRF membranes in v...

Back to Top