Slow and incomplete osseointegration and loss of osseointegration are major problems in dental and bone implants. We designed implants with interconnected 3D-tubulous structures and hypothesized that such interconnecting 3D (I3D) structures would serve as a repository for chemoattractants to recruit stem cells to promote osseointegration. A concept Laser Mlab-cusing-R laser-powder-bed-fusion (LPBF) 3D printing system was used to produce titanium implants with designed features. The implants were loaded (coated) with stromal cell-derived factor-1 alpha (SDF-1α), and subjected to stem cell recruitment. Implants were then surgically transplanted into the rabbit skull bone. After 12 weeks, osseointegration was analyzed by reverse-torque test an...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Objective: This study sought to compare the biocompatibility of a three-dimensional (3D)-printed tit...
First published: 07 December 2016The success of implantation of materials into bone is governed by e...
With the increasing demand for low-cost and more efficient dental implants, there is an urgent need ...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
Custom devices supporting bone regeneration and implant placement are needed for edentulous patients...
Osseointegration success of bone-interfacing implants is reduced for many compromised patients, nece...
Custom devices supporting bone regeneration and implant placement are needed for edentulous patients...
Titanium specimens have been proven to be safe and effective biomaterials in terms of their osseo-in...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Despite the recent advances in 3D-printing, it is often difficult to fabricate implants that optimal...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Objective: This study sought to compare the biocompatibility of a three-dimensional (3D)-printed tit...
First published: 07 December 2016The success of implantation of materials into bone is governed by e...
With the increasing demand for low-cost and more efficient dental implants, there is an urgent need ...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
Custom devices supporting bone regeneration and implant placement are needed for edentulous patients...
Osseointegration success of bone-interfacing implants is reduced for many compromised patients, nece...
Custom devices supporting bone regeneration and implant placement are needed for edentulous patients...
Titanium specimens have been proven to be safe and effective biomaterials in terms of their osseo-in...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Despite the recent advances in 3D-printing, it is often difficult to fabricate implants that optimal...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Bone Tissue Engineering (BTE) and Dental Implantology (DI) require the integration of implanted stru...
Objective: This study sought to compare the biocompatibility of a three-dimensional (3D)-printed tit...
First published: 07 December 2016The success of implantation of materials into bone is governed by e...