Department of Pediatric Orthopedics, Medical University Graz, 8036 Graz, Austria.
Acta Biomater. 2012 Mar;8(3):1230-8. doi: 10.1016/j.actbio.2011.11.008. Epub 2011 Nov 11.
This study investigates the bone and tissue response to degrading magnesium pin implants in the growing rat skeleton by continuous in vivo microfocus computed tomography (μCT) monitoring over the entire pin degradation period, with special focus on bone remodeling after implant dissolution. The influence of gas release on tissue performance upon degradation of the magnesium implant is also addressed. Two different magnesium alloys - one fast degrading (ZX50) and one slowly degrading (WZ21) - were used for evaluating the bone response in 32 male Sprague-Dawley rats. After femoral pin implantation μCTs were performed every 4 weeks over the 24 weeks of the study period. ZX50 pins exhibited early degradation and released large hydrogen gas volumes. While considerable callus formation occurred, the bone function was not permanently harmed and the bone recovered unexpectedly quickly after complete pin degradation. WZ21 pins kept their integrity for more than 4 weeks and showed good osteoconductive properties by enhancing bone accumulation at the pin surface. Despite excessive gas formation, the magnesium pins did not harm bone regeneration. At smaller degradation rates, gas evolution remained unproblematic and the magnesium implants showed good biocompatibility. Online μCT monitoring is shown to be suitable for evaluating materials degradation and bone response in vivo, providing continuous information on the implant and tissue performance in the same living animal.
本研究通过连续的体内微焦点计算机断层扫描(μCT)监测,在整个植入物降解过程中对生长中的大鼠骨骼中降解镁钉植入物的骨和组织反应进行了研究,特别关注植入物溶解后的骨重塑。还研究了气体释放对镁植入物降解时组织性能的影响。使用两种不同的镁合金 - 一种快速降解(ZX50)和一种缓慢降解(WZ21) - 来评估 32 只雄性 Sprague-Dawley 大鼠中的骨反应。在股骨钉植入后,在研究期间的 24 周内,每隔 4 周进行一次 μCT 检查。ZX50 钉表现出早期降解并释放出大量氢气。虽然发生了大量的骨痂形成,但骨功能没有永久性受损,并且在完全降解后,骨骼恢复速度出人意料地快。WZ21 钉保持其完整性超过 4 周,并通过增强钉表面的骨积累显示出良好的骨传导性。尽管气体形成过多,但镁钉并未损害骨再生。在较小的降解速率下,气体演化仍然不成问题,镁植入物表现出良好的生物相容性。在线 μCT 监测被证明适用于体内评估材料降解和骨反应,为同一活体动物中的植入物和组织性能提供连续信息。