Department of Industrial Engineering, Swanson School of Engineering, University of Pittsburgh, Pittsburgh, Pennsylvania, 15261.
Division of Vascular Surgery, University of Pittsburgh Medical Center, Pittsburgh, Pennsylvania, 15232.
J Biomed Mater Res B Appl Biomater. 2019 May;107(4):911-923. doi: 10.1002/jbm.b.34186. Epub 2018 Sep 3.
Customizable medical devices have recently attracted attentions both in dental and orthopedic device fields, which can tailor to the patients' anatomy to reduce the length of surgery time and to improve the clinical outcomes. However, development of the patient specific endovascular device still remains challenging due to the limitations in current 3D printing technology, specifically for the stent grafts. Therefore, our group has investigated the feasibility of a highly stretchable expanded-polytetrafluoroethylene (ePTFE) tube as a customizable graft material with the laser-welded nitinol backbone. In this study, a highly stretchable ePTFE tube was evaluated in terms of mechanical behaviors, in vitro biocompatibility of ePTFE with various stretchiness levels, and capability for the integration with the laser-welded customizable nitinol stent backbone. A prototype stent graft for the swine's venous size was successfully constructed and tested in the porcine model. This study demonstrates the ability of ePTFE tube to customize the stent graft without any significant issue, for example, sweating through the stretched pores in the ePTFE tube, as well as in vivo feasibility of the device for bleeding control. This novel customizable stent graft would offer possibilities for a wide range of both current and next-generation endovascular applications for the treatment in vascular injuries or diseases. © 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 911-923, 2019.
定制医疗器械最近在牙科和矫形设备领域引起了关注,它可以根据患者的解剖结构进行定制,以缩短手术时间并提高临床效果。然而,由于当前 3D 打印技术的限制,特别是对于支架移植物,开发特定于患者的血管内设备仍然具有挑战性。因此,我们小组研究了具有激光焊接的镍钛诺骨架的高拉伸膨体聚四氟乙烯(ePTFE)管作为可定制移植物材料的可行性。在这项研究中,从机械性能、不同拉伸水平的 ePTFE 的体外生物相容性以及与激光焊接可定制镍钛诺支架骨架集成的能力等方面评估了高拉伸 ePTFE 管。成功构建并在猪模型中测试了用于猪静脉尺寸的原型支架移植物。本研究表明 ePTFE 管具有定制支架移植物的能力,而没有出现任何重大问题,例如在 ePTFE 管的拉伸孔中出汗,以及该设备在控制出血方面的体内可行性。这种新型定制支架移植物为当前和下一代血管内应用的广泛治疗血管损伤或疾病提供了可能性。 2018 年 Wiley 期刊,生物材料研究杂志部分 B:应用生物材料 107B:911-923,2019 年。