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Sci Rep ; 6: 20493, 2016 Feb 08.
Article in English | MEDLINE | ID: mdl-26854193

ABSTRACT

Custom devices supporting bone regeneration and implant placement are needed for edentulous patients with large mandibular deficiencies where endosteal implantation is not possible. We developed a novel subperiosteal titanium-aluminum-vanadium bone onlay device produced by additive manufacturing (AM) and post-fabrication osteogenic micro-/nano-scale surface texture modification. Human osteoblasts produced osteogenic and angiogenic factors when grown on laser-sintered nano-/micro-textured surfaces compared to smooth surfaces. Surface-processed constructs caused higher bone-to-implant contact, vertical bone growth into disk pores (microCT and histomorphometry), and mechanical pull-out force at 5 and 10 w on rat calvaria compared to non surface-modified constructs, even when pre-treating the bone to stimulate osteogenesis. Surface-modified wrap-implants placed around rabbit tibias osseointegrated by 6 w. Finally, patient-specific constructs designed to support dental implants produced via AM and surface-processing were implanted on edentulous mandibular bone. 3 and 8 month post-operative images showed new bone formation and osseointegration of the device and indicated stability of the dental implants.


Subject(s)
Biocompatible Materials/pharmacology , Dental Implants , Osseointegration/drug effects , Osteogenesis/drug effects , Titanium/pharmacology , Alloys , Animals , Biocompatible Materials/chemistry , Bone Screws , Cell Line , Equipment Design , Humans , Male , Osteoblasts/cytology , Osteoblasts/metabolism , Porosity , Rabbits , Rats , Rats, Nude , Rats, Sprague-Dawley , Skull/diagnostic imaging , Skull/drug effects , Skull/pathology , Surface Properties , Tibia/diagnostic imaging , Tibia/drug effects , Tibia/pathology , Titanium/chemistry
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