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Magnesium inference screw supports early graft incorporation with inhibition of graft degradation in anterior cruciate ligament reconstruction

机译:镁推断螺钉支持早期移植物并入并抑制前交叉韧带重建中的移植物降解

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摘要

Patients after anterior cruciate ligament (ACL) reconstruction surgery commonly encounters graft failure in the initial phase of rehabilitation. The inhibition of graft degradation is crucial for the successful reconstruction of the ACL. Here, we used biodegradable high-purity magnesium (HP Mg) screws in the rabbit model of ACL reconstruction with titanium (Ti) screws as a control and analyzed the graft degradation and screw corrosion using direct pull-out tests, microCT scanning, and histological and immunohistochemical staining. The most noteworthy finding was that tendon graft fixed by HP Mg screws exhibited biomechanical properties substantially superior to that by Ti screws and the relative area of collagen fiber at the tendon-bone interface was much larger in the Mg group, when severe graft degradation was identified in the histological analysis at 3 weeks. Semi-quantitative immunohistochemical results further elucidated that the MMP-13 expression significantly decreased surrounding HP Mg screws with relatively higher Collagen II expression. And HP Mg screws exhibited uniform corrosion behavior without displacement or loosening in the femoral tunnel. Therefore, our results demonstrated that Mg screw inhibited graft degradation and improved biomechanical properties of tendon graft during the early phase of graft healing and highlighted its potential in ACL reconstruction.
机译:前交叉韧带(ACL)重建手术后的患者通常在康复初期遇到移植失败。移植物降解的抑制对于成功重建ACL至关重要。在这里,我们在以钛(Ti)螺钉作为ACL重建的兔子模型中,使用了可生物降解的高纯度镁(HP Mg)螺钉作为对照,并使用直接拉力测试,microCT扫描和组织学分析了移植物的降解和螺钉腐蚀和免疫组化染色。最值得注意的发现是,当确定严重的移植物降解时,HP Mg螺钉固定的肌腱移植物的生物力学性能显着优于Ti螺钉,并且在Mg组中,腱-骨界面处的胶原纤维的相对面积大得多。在第3周进行组织学分析。半定量免疫组织化学结果进一步阐明,MMP-13的表达显着降低了HP Mg螺钉周围,胶原II的表达相对较高。 HP Mg螺钉表现出均匀的腐蚀行为,在股骨隧道中没有移位或松弛。因此,我们的结果表明,Mg螺钉在移植物愈合的早期抑制了移植物降解并改善了肌腱移植物的生物力学性能,并突出了其在ACL重建中的潜力。

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