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Bridging Repair of Large Rotator Cuff Tears Using a Multilayer Decellularized Tendon Slices Graft in a Rabbit Model

机译:使用多层脱细胞的肌腱切片移植在兔模型中的大型转子袖口撕裂的桥接修复

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PurposeThe purpose of this study was to evaluate the efficacy of an extracellular matrix scaffold with multilayer decellularized tendon slices (MDTSs) for reconstructing large rotator cuff tears in a rabbit model. MethodsLarge defects in the infraspinatus tendons were created bilaterally in 36 rabbits. The graft group underwent bridging repair of the defects with the MDTSs grafts from Achilles tendons of adult beagle dogs, and the control group underwent repair with the autologous excised tendon. Specimens underwent histologic observation, biomechanical testing, and microcomputed tomography analysis at 2, 4, and 8?weeks after surgery. ResultsHistologic analysis confirmed that the MDTSs graft promoted cell ingrowth and tissue integration, and fibrocartilage and Sharpey fibers formed at the enthesis at 8?weeks. Accordingly, the MDTSs graft generated a histologic appearance similar to that of the autogenous tendon graft. Mechanical testing revealed a significant increase of the regenerated tendons in ultimate load and stiffness from 4 to 8?weeks postoperatively, which was similar to autologous tendon repair. Microcomputed tomography analysis demonstrated that the MDTSs graft promoted bone formation at the tendon-bone insertion, thus improving the mechanical properties of the repair tendon. ConclusionsThe MDTSs graft used to bridge large rotator cuff defects in a rabbit model promoted host cell ingrowth, enhanced the remodeling of regenerated tendon, and promoted fibrocartilage formation, thus improving the biomechanical properties of the repaired tendon. This study thereby provides fundamental information for rotator cuff regeneration with the MDTSs graft. Clinical RelevanceRotator cuff regeneration using MDTSs grafts is a promising procedure for large rotator cuff tears.
机译:本研究的目的目的是评估细胞外基质支架与多层脱细胞肌腱切片(MDTS)的功效,用于在兔模型中重建大型旋转箍泪。方法在36只兔子中自身地产生侵入血液肌腱的缺陷。移植物组接受了从成年比格犬的阿基里斯肌腱的MDTSS移植物的桥接修复缺陷,对照组接受了自体切除的肌腱的修复。标本在手术后2,4和8周内接受了组织学观察,生物力学测试和微型断层扫描分析。结果幕府学分析证实,MDTS接枝促进了细胞的发热性和组织积分,纤维纤维和尖锐纤维在肠内形成为8?周。因此,MDTS接枝产生类似于自生肌腱移植物的组织学外观。机械测试显示术后4至8周内最终载荷和刚度的再生肌腱的显着增加,这与自体肌腱修复相似。微型断层扫描分析证明,MDTSS促进肌腱 - 骨插入处的骨形成,从而提高了修复肌腱的机械性能。结论用于桥接大型转子箍缺陷的兔模型中的MDTSS促进宿主细胞的缺陷,增强了再生肌腱的重塑,促进纤维纤维形成,从而改善了修复肌腱的生物力学性质。因此,该研究提供了用MDTS移植物的转子袖带再生的基本信息。使用MDTSS移植物的临床相关性袖带再生是大型旋转袖口撕裂的有希望的程序。

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