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首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >The process of tendon regeneration in an achilles tendon resection rat model as a model for hamstring regeneration after harvesting for anterior cruciate ligament reconstruction.
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The process of tendon regeneration in an achilles tendon resection rat model as a model for hamstring regeneration after harvesting for anterior cruciate ligament reconstruction.

机译:在阿基里斯肌腱再生的过程肌腱切除大鼠模型的模型肌腱再生后收获前交叉韧带重建。

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PURPOSE: The purpose of this study was to clarify the mechanism of tendon regeneration by investigating macroscopically, histologically, and biomechanically. METHODS: Fifty, adult, female Sprague-Dawley rats were used. The Achilles tendon in the left hind limb was removed totally by use of the tendon-stripping device. Rats were killed at 2, 7, 30, 90, and 180 days after surgery, and the regenerate tendons were dissected. Contralateral Achilles tendons were used as normal controls. Gross anatomic changes, microscopic remodeling, and recovery of biomechanical properties of regenerate tendons were investigated. The expressions of type I collagen, type III collagen, and transforming growth factor beta1 were also investigated by immunohistochemistry. RESULTS: The regenerate tendons formed in all specimens. In the early phase, hematoma and soft granulation tissue were observed at the harvest defect. These gradually matured with time, and the microscopic structure became quite similar to normal at 180 days after surgery. These findings occurred uniformly along the entire length of the regenerate tendon. However, the biomechanical properties were significantly inferior to the normal tendons (P < .05). Transforming growth factor beta1 was well co-localized with inflammatory cells and fibroblasts in the regenerate tendons. The type I-type III collagen ratio in the regenerate tendon was significantly decreased in the early phase (P < .05) but gradually increased with time. CONCLUSIONS: Tendon regeneration and maturation occurred uniformly along the length of regenerate tendons. The hematoma that initially occupies the harvest defect acted as a scaffold for fibroblast precursor cells from the surrounding peritendinous tissue and tendon sheath. The mechanical properties of regenerate tendon were significantly inferior to contralateral control even at 180 days after surgery, and the alteration of the collagen composition would have an influence on mechanical properties of regenerate tendon. CLINICAL RELEVANCE: Clinicians should be cautious about using reharvested hamstring tendons for ligament reconstruction surgery.
机译:目的:本研究的目的是阐明肌腱再生的机制笔者试图从宏观调查,组织学检查和生物。女性Sprague-Dawley老鼠。在左后肢跟腱被移除完全利用tendon-stripping设备。老鼠被杀死在2、7、30日,90年,180天手术后,再生肌腱解剖。作为正常对照组。显微重建和恢复再生肌腱的生物力学特性被调查。胶原蛋白、III型胶原蛋白和转换生长因子beta1也被调查免疫组织化学。肌腱形成在所有标本。阶段,血肿和软肉芽组织观察到收获的缺陷。随着时间的推移,成熟和微观结构变得相当类似于正常后180天手术。整个再生肌腱长度。然而,生物力学性能明显低于正常肌腱(P <. 05)。硝唑和炎症细胞在再生肌腱成纤维细胞。i类型III再生胶原蛋白比例腱早期明显减少阶段(P < . 05),但逐渐增加时间。成熟发生均匀的长度再生肌腱。占据了收获缺陷作为支架纤维母细胞的前体细胞peritendinous周围组织和肌腱鞘。肌腱是大大不如侧控制甚至在180天后手术,胶原蛋白的改变对机械组成会有影响肌腱再生的性质。相关性:临床医生应该持谨慎态度使用reharvested大腿肌腱韧带重建手术。

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