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Mechanical Properties and Related Histological Alterations of Engineered Tendons in Vivo

机译:体内工程肌腱的机械性能及相关组织改变

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The purpose of this research is to find out the interaction between histological alterations and mechanical properties of engineered tendon implanted in situ. Defects of 0.5cm-1.0cm were made at deep flexor tendons by surgical procedure. Engineered tendons using degradable scaffolds polyglytic acid (PGA) mesh and tendon cells were implanted to repair the defects. Chickens were killed respectively at 2 weeks, 4 weeks, 6 weeks, and 8 weeks after surgery. The implants were taken out for histological examination, biomechanical test, and collagen synthesis assay. The results showed that after surgery the PGA scaffolds degraded fast and took precedence of collagen synthesis. There were not enough amount and maturation of the collagen fibers of the new tendon at 2-8 weeks after surgery. The biomechanical properties of new tendons were less than those of the normal tendon. Therefore, it is necessary to construct engineered tendons with better degradation rate of scaffolds and suitable biomechanical stimulation so that more collagen synthesis and better biomechanical properties of new tendons can be developed early after implantation.
机译:本研究的目的是找出工程肌腱的组织学改变和机械性能之间的相互作用。通过外科手术,在深屈肌肌腱上进行0.5cm-1.0cm的缺陷。使用可降解支架的工程化肌腱聚甘露酸(PGA)网和肌腱细胞被植入修复缺陷。鸡在2周,4周,6周和手术后8周的鸡被杀。取出植入物用于组织学检查,生物力学测试和胶原合成测定。结果表明,在手术后,PGA支架的快速降解并采取了胶原合成的优先效果。手术后2-8周,新肌腱的胶原纤维数量和成熟量没有足够的数量和成熟。新肌腱的生物力学特性小于正常肌腱的生物力学性质。因此,需要构建具有更好的支架和合适的生物力学刺激的改进肌腱,从而可以在植入后早期开发更多的胶原合成和新肌腱的更好的生物力学性质。

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