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首页> 外文期刊>Expert opinion on biological therapy >Effectiveness of xenogenous-based bovine-derived platelet gel embedded within a three-dimensional collagen implant on the healing and regeneration of the Achilles tendon defect in rabbits
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Effectiveness of xenogenous-based bovine-derived platelet gel embedded within a three-dimensional collagen implant on the healing and regeneration of the Achilles tendon defect in rabbits

机译:嵌入三维胶原植入物中的异种基于牛的血小板凝胶对兔跟腱缺损的愈合和再生的有效性

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摘要

Background and objective: Tissue engineering is an option in reconstructing large tendon defects and managing their healing and regeneration. We designed and produced a novel xenogeneic-based bovine platelet, embedded it within a tissue-engineered collagen implant (CI) and applied it in an experimentally induced large tendon defect model in rabbits to test whether bovine platelets could stimulate tendon healing and regeneration in vivo. Methods: One hundred twenty rabbits were randomly divided into two experimental and pilot groups. In all the animals, the left Achilles tendon was surgically excised and the tendon edges were aligned by Kessler suture. Each group was then divided into three groups of control (no implant), treated with CI and treated with collagen-platelet implant. The pilot groups were euthanized at 10, 15, 30 and 40 days post-injury (DPI), and their gross and histologic characteristics were evaluated to study host-graft interaction mechanism. To study the tendon healing and its outcome, the experimental animals were tested during the experiment using hematologic, ultrasonographic and various methods of clinical examinations and then euthanized at 60 DPI and their tendons were evaluated by gross pathologic, histopathologic, scanning electron microscopic, biophysical and biochemical methods. Results: Bovine platelets embedded within a CI increased inflammation at short term while it increased the rate of implant absorption and matrix replacement compared with the controls and CI alone. Treatment also significantly increased diameter, density, amount, alignment and differentiation of the collagen fibrils and fibers and approximated the water uptake and delivery behavior of the healing tendons to normal contralaterals (p < 0.05). Treatment also improved echogenicity and homogenicity of the tendons and reduced peritendinous adhesion, muscle fibrosis and atrophy, and therefore, it improved the clinical scores and physical activity related to the injured limb when compared with the controls (p < 0.05). Conclusion: The bovine platelet gel embedded within the tissue-engineered CI was effective in healing, modeling and remodeling of the Achilles tendon in rabbit. This strategy may be a valuable option in the clinical setting.
机译:背景与目的:组织工程学是重建大型肌腱缺损并管理其愈合和再生的一种选择。我们设计并生产了一种基于异种基因的新型牛血小板,将其嵌入组织工程化的胶原蛋白植入物(CI)中,然后将其应用于实验性诱导的兔大肌腱缺损模型中,以测试牛血小板是否可以在体内刺激肌腱的愈合和再生。方法:将120只兔随机分为实验组和实验组。在所有动物中,手术切除左跟腱,并通过凯斯勒缝合线将腱边缘对齐。然后将每组分为三组对照(无植入物),分别用CI和胶原-血小板植入物治疗。对实验组在受伤后10、15、30和40天(DPI)处以安乐死,并评估其总体和组织学特征以研究宿主与移植物的相互作用机制。为了研究肌腱的愈合及其结局,在实验过程中使用血液学,超声检查和各种临床检查方法对实验动物进行了测试,然后在60 DPI处安乐死,并通过大体病理学,组织病理学,扫描电镜,生物物理和生物技术评估了它们的肌腱。生化方法。结果:与单独的对照组和CI相比,包埋在CI中的牛血小板在短期内增加了炎症,同时增加了植入物吸收和基质置换的速率。治疗还显着增加了胶原原纤维和纤维的直径,密度,数量,排列和分化,并使愈合肌腱对正常对侧的水的吸收和输送行为近似(p <0.05)。治疗还改善了肌腱的回声性和同质性,并减少了腹膜粘连,肌肉纤维化和萎缩,因此与对照组相比,它改善了与受伤肢体有关的临床评分和体育活动(p <0.05)。结论:组织工程CI中包埋的牛血小板凝胶对兔跟腱的愈合,建模和重塑有效。在临床环境中,该策略可能是有价值的选择。

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