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在比格犬缺损模型中3D打印聚己内酯支架植入联合β-磷酸三钙粉末用于牙槽骨增量的体内评估

In Vivo Evaluation of 3D-Printed Polycaprolactone Scaffold Implantation Combined with β-TCP Powder for Alveolar Bone Augmentation in a Beagle Defect Model.

作者信息

Park Su A, Lee Hyo-Jung, Kim Keun-Suh, Lee Sang Jin, Lee Jung-Tae, Kim Sung-Yeol, Chang Na-Hee, Park Shin-Young

机构信息

Department of Nature-Inspired Nanoconvergence Systems, Korea Institute of Machinery and Materials, Daejeon 34103, Korea.

Department of Periodontology, Section of Dentistry, Seoul National University Bundang Hospital, Seongnam-si 13620, Korea.

出版信息

Materials (Basel). 2018 Feb 4;11(2):238. doi: 10.3390/ma11020238.

Abstract

Insufficient bone volume is one of the major challenges encountered by dentists after dental implant placement. This study aimed to evaluate the efficacy of a customized three-dimensional polycaprolactone (3D PCL) scaffold implant fabricated with a 3D bio-printing system to facilitate rapid alveolar bone regeneration. Saddle-type bone defects were surgically created on the healed site after extracting premolars from the mandibles of four beagle dogs. The defects were radiologically examined using computed tomography for designing a customized 3D PCL scaffold block to fit the defect site. After fabricating 3D PCL scaffolds using rapid prototyping, the scaffolds were implanted into the alveolar bone defects along with β-tricalcium phosphate powder. In vivo analysis showed that the PCL blocks maintained the physical space and bone conductivity around the defects. In addition, no inflammatory infiltrates were observed around the scaffolds. However, new bone formation occurred adjacent to the scaffolds, rather than directly in contact with them. More new bone was observed around PCL blocks with 400/1200 lattices than around blocks with 400/400 lattices, but the difference was not significant. These results indicated the potential of 3D-printed porous PCL scaffolds to promote alveolar bone regeneration for defect healing in dentistry.

摘要

骨量不足是牙医在植入牙种植体后遇到的主要挑战之一。本研究旨在评估使用三维生物打印系统制造的定制三维聚己内酯(3D PCL)支架植入物促进牙槽骨快速再生的疗效。从四只比格犬的下颌拔除前磨牙后,在愈合部位手术制造鞍型骨缺损。使用计算机断层扫描对缺损进行放射学检查,以设计适合缺损部位的定制3D PCL支架块。使用快速成型技术制造3D PCL支架后,将支架与β-磷酸三钙粉末一起植入牙槽骨缺损处。体内分析表明,PCL块维持了缺损周围的物理空间和骨传导性。此外,在支架周围未观察到炎性浸润。然而,新骨形成发生在支架附近,而不是直接与它们接触。在具有400/1200晶格的PCL块周围观察到的新骨比具有400/400晶格的块周围更多,但差异不显著。这些结果表明3D打印多孔PCL支架在促进牙槽骨再生以实现牙科缺损愈合方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6274/5848935/4ccc529ad8ea/materials-11-00238-g001.jpg

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