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Novel Osteogenic Ti-6Al-4V Device For Restoration Of Dental Function In Patients With Large Bone Deficiencies: Design, Development And Implementation

机译:新型骨生成性Ti-6Al-4V装置,用于大骨缺损患者的牙齿功能恢复:设计,开发和实施

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摘要

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.
机译:下颌骨缺损且无法进行骨内植入的无牙缺牙患者需要支持骨再生和植入物放置的定制设备。我们开发了一种新型的骨膜下钛-铝-钒骨覆盖装置,该装置由增材制造(AM)和后加工成骨的微观/纳米级表面纹理修饰制成。与光滑表面相比,在激光烧结的纳米/微织构表面上生长时,人类成骨细胞会产生成骨和血管生成因子。与未经表面修饰的构建体相比,表面处理过的构建体与未经过表面修饰的构建体相比,在大鼠颅骨上产生了更高的骨骼与植入物接触,垂直的骨骼生长到圆盘孔(microCT和组织形态计量学)以及在5和10 w处的机械拔出力。治疗骨骼以刺激成骨作用。经表面修饰的包裹植入物放置在兔胫骨周围,骨整合成6 w。最后,将用于支持通过AM和表面处理生产的牙科植入物的患者特定结构植入到无牙颌骨上。术后3个月和8个月的图像显示了该装置的新骨形成和骨整合,并显示了牙植入物的稳定性。

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