a Nano-Bio Regenerative Medical Institute, School of Medicine , Hallym University , Chuncheon , Republic of Korea.
b Department of Otorhinolaryngology-Head and Neck Surgery , Chuncheon Sacred Heart Hospital, School of Medicine, Chuncheon Sacred Heart Hospital, Hallym University , Chuncheon , Republic of Korea.
J Biomater Sci Polym Ed. 2018 May-Jun;29(7-9):894-906. doi: 10.1080/09205063.2017.1384199. Epub 2017 Oct 3.
Open reduction with internal fixation is commonly used for the treatment of bone fractures. However, postoperative infection associated with internal fixation devices (intramedullary nails, plates, and screws) remains a significant complication, and it is technically difficult to fix multiple fragmented bony fractures using internal fixation devices. In addition, drilling in the bone to install devices can lead to secondary fracture, bone necrosis associated with postoperative infection. In this study, we developed bone clip type internal fixation device using three- dimensional (3D) printing technology. Standard 3D model of the bone clip was generated based on computed tomography (CT) scan of the femur in the rat. Polylacticacid (PLA), hydroxyapatite (HA), and silk were used for bone clip material. The purpose of this study was to characterize 3D printed PLA, PLA/HA, and PLA/HA/Silk composite bone clip and evaluate the feasibility of these bone clips as an internal fixation device. Based on the results, PLA/HA/Silk composite bone clip showed similar mechanical property, and superior biocompatibility compared to other types of the bone clip. PLA/HA/Silk composite bone clip demonstrated excellent alignment of the bony segments across the femur fracture site with well-positioned bone clip in an animal study. Our 3D printed bone clips have several advantages: (1) relatively noninvasive (drilling in the bone is not necessary), (2) patient-specific design (3) mechanically stable device, and (4) it provides high biocompatibility. Therefore, we suggest that our 3D printed PLA/HA/Silk composite bone clip is a possible internal fixation device.
切开复位内固定术常用于治疗骨折。然而,与内置固定装置(髓内钉、钢板和螺钉)相关的术后感染仍然是一个严重的并发症,而且使用内置固定装置固定多处粉碎性骨折在技术上具有挑战性。此外,在骨内钻孔安装装置可能导致继发性骨折和术后感染相关的骨坏死。在这项研究中,我们使用三维(3D)打印技术开发了骨夹式内置固定装置。根据大鼠股骨的计算机断层扫描(CT)生成了骨夹的标准 3D 模型。聚乳酸(PLA)、羟基磷灰石(HA)和丝用于骨夹材料。本研究的目的是表征 3D 打印 PLA、PLA/HA 和 PLA/HA/丝复合材料骨夹,并评估这些骨夹作为内置固定装置的可行性。基于研究结果,PLA/HA/丝复合材料骨夹表现出与其他类型骨夹相似的机械性能和更好的生物相容性。在动物研究中,PLA/HA/丝复合材料骨夹在股骨骨折部位表现出良好的骨段对线,骨夹位置良好。我们的 3D 打印骨夹具有以下优点:(1)相对微创(无需在骨内钻孔),(2)患者特异性设计,(3)机械稳定的装置,以及(4)具有较高的生物相容性。因此,我们建议我们的 3D 打印 PLA/HA/丝复合材料骨夹是一种可能的内置固定装置。