首页> 外文期刊>Clinical biomechanics >Ex vivo infiltration of fibroblasts into the tendon deteriorates the mechanical properties of tendon fascicles but not those of tendon bundles.
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Ex vivo infiltration of fibroblasts into the tendon deteriorates the mechanical properties of tendon fascicles but not those of tendon bundles.

机译:成纤维细胞离体渗入肌腱会破坏肌腱束的机械性能,但不会破坏肌腱束的机械性能。

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BACKGROUND: After ligament reconstruction, mechanical deterioration of the grafted tendon is observed with revascularization and cellular infiltration. However, the effect of cellular infiltration on the mechanical properties of the tendon matrix has not been fully understood. METHODS: Cultured fibroblasts derived from the rabbit patellar tendon were seeded around an acellular rabbit patellar tendon that had undergone freeze-thaw treatment. At time-0, 3, and 6 weeks after seeding the cells, we evaluated cellular distribution in the tendon using a confocal laser microscope and the mechanical evaluations of the tendon fascicles and the tendon bundles. FINDINGS: The confocal laser microscopic analysis showed fibroblast infiltration ex vivo into the acellular tendon matrix. We could not find significant effects of the cellular infiltration on the tangent modulus of the tendon bundle, although the ex vivo cellular infiltration significantly reduced the modulus of the tendon fascicle. In addition, the tangent modulus of the incubated tendon without fibroblasts significantly decreased with time, particularly in the tendon bundle levels. INTERPRETATION: The findings of this study suggested that the effects of ex vivo cellular infiltration on the mechanical properties of the tendon bundles are relatively small, compared with its striking effect on the tendon fascicles.
机译:背景:韧带重建后,通过血运重建和细胞浸润观察到移植肌腱的机械性退化。但是,细胞渗透对肌腱基质的机械性能的影响尚未完全了解。方法:将来自兔pa腱的培养成纤维细胞接种在经过冷冻-解冻处理的无细胞兔pa腱周围。在接种细胞后的第0、3和6周,我们使用共聚焦激光显微镜评估了肌腱中的细胞分布,并评估了肌腱束和肌腱束的力学性能。结果:共聚焦激光显微镜分析显示成纤维细胞离体渗入脱细胞肌腱基质。尽管离体细胞浸润显着降低了肌腱束的模量,但我们并未发现细胞浸润对肌腱束的切线模量有显着影响。另外,没有成纤维细胞的温育肌腱的切线模量随时间显着降低,特别是在肌腱束水平上。解释:这项研究的结果表明,离体细胞浸润对肌腱束机械性能的影响相对较小,而其对肌腱束的打击作用则较小。

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