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首页> 外文期刊>Biomaterials >Enhanced repair of meniscal hoop structure injuries using an aligned electrospun nanofibrous scaffold combined with a mesenchymal stem cell-derived tissue engineered construct
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Enhanced repair of meniscal hoop structure injuries using an aligned electrospun nanofibrous scaffold combined with a mesenchymal stem cell-derived tissue engineered construct

机译:使用对齐的Electromat纳米纤维支架与间充质干细胞衍生组织工程化构建相结合,增强半月板箍结构损伤的修复

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Damage to the meniscal hoop structure results in loss of biomechanical function, which potentially leads to the extrusion of the meniscus from the weight bearing area. However, there have been no established, effective treatments for such injuries. The purpose of this study was to investigate the applicability of cell-seeded nanofibrous scaffolds to repair the damaged meniscal hoop structure along with the prevention of subsequent cartilage degeneration using a rabbit model. Meniscal radial defects (5 mm width) in the medial meniscus were treated by wrapping and suturing with either an aligned electrospun nanofibrous scaffold alone or a scaffold combined with a tissue engineered construct (TEC) derived from synovial mesenchymal stem cells (MSCs), with the scaffold fiber direction matching that of the meniscal circumferential fibers. The MSC-based TEC-combined nanofibrous scaffolds contributed significantly to the prevention of meniscal extrusion and exerted a chondroprotective effect, compared with either scaffold alone or the untreated control groups. Also, meniscal defects treated with such TEC-combined nanofibrous scaffolds were consistently repaired with a fibrocartilaginous tissue. In this study, we have demonstrated the feasibility of a combined TEC-nanofibrous scaffold to repair the meniscal hoop structure, and prevent the progression to cartilage degeneration, as a potential tissue engineering method.
机译:对半月板箍结构的损坏导致生物力学功能的损失,这可能导致弯月面从重量轴承区域挤出。然而,对这种伤害没有建立,有效的治疗方法。本研究的目的是探讨细胞割草纳米纤维支架的适用性,以防止使用兔模型的后续软骨变性。内侧半月板中的半月板径向缺陷(5mm宽度)通过单独的对齐的电纺纳米纤维支架或支架与来自滑膜间充质干细胞(MSCs)的组织工程化构建体(TEC)结合的支架进行处理和缝合。脚手架纤维方向匹配半月板圆周纤维的方向。基于MSC的TEC组合的纳米纤维支架对预防半月板挤出的贡献显着贡献,并施加了与单独的支架单独或未治疗的对照组的软骨保护作用。此外,用这种TEC组合的纳米纤维支架处理的半月板缺陷用纤维纤维组织始终修复。在这项研究中,我们已经证明了组合的TEC纳米纤维支架的可行性来修复半月板箍结构,并防止潜在组织工程方法作为软骨变性的进展。

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