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首页> 外文期刊>Journal of Hand Surgery. American Volume >Use of a magnesium-based bone adhesive for flexor tendon-to-bone healing.
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Use of a magnesium-based bone adhesive for flexor tendon-to-bone healing.

机译:镁基骨粘合剂在屈肌腱至骨愈合中的用途。

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PURPOSE: Our previous studies in a canine animal model demonstrated that the flexor tendon-to-bone insertion site has a poor capacity to heal. Magnesium-based adhesives have the potential to improve tendon-to-bone healing. Therefore, we hypothesized that magnesium-based bone adhesive (MBA) will improve the tendon-to-bone biomechanical properties initially and in the early period after repair. METHODS: Flexor digitorum profundus tendons were injured and repaired into bone tunnels in the distal phalanges of dogs. The bone tunnels were either filled with MBA before completing the repair or left empty (control [CTL]). Histologic appearance, tensile properties, range of motion, and bone density were examined at time zero and 21 days after the repair. RESULTS: There was no histologic evidence of acute inflammation. There appeared to be more mast cells in the MBA group than in the CTL group. Chronic inflammatory infiltrate and fibrosis was slightly higher in the MBA group compared with the CTL group. Tensile properties at time zero were significantly higher in the MBA group compared with the CTL group. However, tensile properties were significantly lower in the MBA group compared with the CTL group at 21 days. Range of motion and bone density were significantly lower in the MBA and CTL groups compared with normal (ie, uninjured) at 21 days; no differences were seen when comparing MBA with CTL. CONCLUSIONS: We found that the initial biomechanical properties of flexor tendon-to-bone repairs can be improved with MBA. However, MBA use in vivo led to a decrease in the biomechanical properties of the repair. There was no effect of MBA on bone density or range of motion in the early period after repair. Our histologic analysis suggests that the poor healing in the MBA group may have been due to an allergic response or to increased chronic inflammation resulting from the foreign material.
机译:目的:我们先前在犬类动物模型中的研究表明,屈肌腱至骨的插入部位愈合能力较差。镁基粘合剂具有改善肌腱至骨愈合的潜力。因此,我们假设镁基骨粘合剂(MBA)将在修复初期和修复后的早期改善肌腱到骨的生物力学性能。方法:将指趾深屈肌腱损伤并修复成犬远端指骨的骨隧道。骨隧道在完成修复之前已充满MBA或留空了(对照[CTL])。在修复后第零天和第21天检查组织学外观,拉伸特性,运动范围和骨密度。结果:没有急性炎症的组织学证据。 MBA组的肥大细胞似乎比CTL组的多。与CTL组相比,MBA组的慢性炎性浸润和纤维化略高。与CTL组相比,MBA组零时的拉伸性能显着更高。然而,与CTL组相比,MBA组在21天时的拉伸性能显着降低。与正常(即未受伤)相比,MBA和CTL组在21天的运动范围和骨密度显着降低。比较MBA和CTL时没有发现差异。结论:我们发现,使用MBA可以改善屈肌腱至骨修复的初始生物力学性能。但是,体内使用MBA会导致修复的生物力学性能下降。修复后的早期,MBA对骨密度或运动范围没有影响。我们的组织学分析表明,MBA组的不良愈合可能是由于过敏反应或异物导致的慢性炎症增加所致。

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