...
首页> 外文期刊>Journal of the American College of Surgeons >Role of tissue-engineered artificial tendon in healing of a large achilles tendon defect model in rabbits
【24h】

Role of tissue-engineered artificial tendon in healing of a large achilles tendon defect model in rabbits

机译:组织工程化的人工腱在兔跟腱大型缺损模型愈合中的作用

获取原文
获取原文并翻译 | 示例
           

摘要

Background: Treatment of large Achilles tendon defects is technically demanding. Tissue engineering is an option. We constructed a collagen-based artificial tendon, covered it with a polydioxanon (PDS) sheath, and studied the role of this bioimplant on experimental tendon healing in vivo. Study Design: A 2-cm tendon gap was created in the left Achilles tendon of rabbits (n = 120). The animals were randomly divided into 3 groups: control (no implant), treated with tridimensional-collagen, and treated with tridimensional-collagen- bidimensional-PDS implants. Each group was divided into 2 subgroups of 60 and 120 days postinjury (DPI). Another 50 pilot animals were used to study the host-implant interaction. Physical activity of the animals was scored and ultrasonographic and bioelectrical characteristics of the injured tendons were investigated weekly. After euthanasia, macro, micro, and nano morphologies and biophysical and biomechanical characteristics of the healing tendons were studied. Results: Treatment improved function of the animals, time dependently. At 60 and 120 DPI, the treated tendons showed significantly higher maximum load, yield, stiffness, stress, and modulus of elasticity compared with controls. The collagen implant induced inflammation and absorbed the migrating fibroblasts in the defect area. By its unique architecture, it aligned the fibroblasts and guided their proliferation and collagen deposition along the stress line of the tendon and resulted in improved collagen density, micro-amp, micro-ohm, water uptake, and delivery of the regenerated tissue. The PDS-sheath covering amplified these characteristics. The implants were gradually absorbed and replaced by a new tendon. Minimum amounts of peritendinous adhesion, muscle atrophy, and fibrosis were observed in the treated groups. Some remnants of the implants were preserved and accepted as a part of the new tendon. Conclusions: The implants were cytocompatible, biocompatible, biodegradable, and effective in tendon healing and regeneration. This implant may be a valuable option in clinical practice.
机译:背景:技术上要求对大跟腱缺陷进行治疗。组织工程是一种选择。我们构建了一个基于胶原蛋白的人工腱,并用聚二氧六环(PDS)鞘覆盖,并研究了这种生物植入物在体内实验性腱愈合中的作用。研究设计:在兔子的左跟腱中形成2厘米的肌腱间隙(n = 120)。将动物随机分为3组:对照组(无植入物),用三维胶原蛋白治疗,并用三维胶原蛋白-二维PDS植入物治疗。每组分为损伤后60天和120天的两个亚组(DPI)。另外50只试验动物用于研究宿主-植入物的相互作用。对动物的身体活动进行评分,并每周检查受伤肌腱的超声和生物电特征。安乐死后,研究了愈合肌腱的宏观,微观和纳米形态以及生物物理和生物力学特征。结果:治疗时间依赖性地改善了动物的功能。与对照组相比,在60和120 DPI下,处理过的肌腱显示出明显更高的最大载荷,屈服,刚度,应力和弹性模量。胶原植入物引起炎症并吸收缺损区域中迁移的成纤维细胞。通过其独特的结构,它排列成纤维细胞并引导它们沿着肌腱的应力线扩散和胶原蛋白沉积,从而改善了胶原蛋白的密度,微安培,微欧姆,吸水率和再生组织的递送。 PDS护套覆盖了这些特性。植入物逐渐被吸收,并被新的肌腱替代。在治疗组中观察到最小量的腹膜粘连,肌肉萎缩和纤维化。保留了部分植入物,并被接受为新肌腱的一部分。结论:植入物具有细胞相容性,生物相容性,可生物降解性,并且在肌腱愈合和再生方面有效。这种植入物可能是临床实践中的宝贵选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号