Department of Spine Surgery, Dongguan People's Hospital/Affiliated Dongguan Hospital, Southern Medical University, Dongguan, 523069, China.
J Biomed Nanotechnol. 2022 Mar 1;18(3):875-883. doi: 10.1166/jbn.2022.3290.
Laminectomy can cause the dura mater to adhere to the surrounding scar tissue, leading to soft spinal stenosis after surgery. Although artificial laminae are considered ideal substitutes, they present challenges such as insecure fixation and insufficient bionics. In this study, we fabricated a bionic titanium alloy artificial lamina using three-dimensional (3D)-printing technology and evaluated its adhesion prevention and stability after laminectomy in pigs. An biomechanical pull-out resistance test indicated that the pull-out strength of the artificial lamina was close to that of a single pedicle screw and was significantly higher than that of a cortical screw. animal implantation results indicated precise laminectomy and artificial lamina implantation, as well as a safe operation process with the assistance of guide plates. X-ray and computed tomography results indicated the well fixation of bionic titanium alloy artificial lamina and screws 10 weeks after laminectomy. The artificial lamina was not loosened after being removed from pigs (postoperative week 12), exhibiting good stability. Additionally, no adhesion was observed in the artificial lamina group, whereas a large amount of scar tissue in the spinal canal covered the dural surface in the control group. Thus, 3D-printed bionic titanium alloy artificial lamina can prevent epidural adhesion after laminectomy, while restoring the structural stability of the posterior complex, suggesting the potential of lamina substitutes for adhesion prevention after laminectomy.
椎板切除术可导致硬脊膜与周围瘢痕组织粘连,导致术后出现软性椎管狭窄。虽然人工椎板被认为是理想的替代品,但它们存在固定不牢固和仿生不足等挑战。在这项研究中,我们使用三维(3D)打印技术制造了仿生钛合金人工椎板,并评估了其在猪模型中预防椎板切除术后硬膜外粘连的效果和稳定性。生物力学拔出阻力测试表明,人工椎板的拔出强度接近单个椎弓根螺钉,明显高于皮质螺钉。动物植入结果表明,在导板的辅助下,可精确进行椎板切除术和人工椎板植入,手术过程安全。X 射线和计算机断层扫描结果表明,仿生钛合金人工椎板和螺钉在椎板切除术后 10 周固定良好。人工椎板在从猪身上取出后(术后 12 周)没有松动,表现出良好的稳定性。此外,在人工椎板组未观察到粘连,而在对照组中大量的椎管瘢痕组织覆盖硬脊膜表面。因此,3D 打印仿生钛合金人工椎板可预防椎板切除术后硬膜外粘连,同时恢复后复合体的结构稳定性,提示其在预防椎板切除术后粘连方面具有替代椎板的潜力。