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首页> 外文期刊>Journal of biomaterials applications >In vitro investigation of a tissue-engineered cell-tendon complex mimicking the transitional architecture at the ligament-bone interface
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In vitro investigation of a tissue-engineered cell-tendon complex mimicking the transitional architecture at the ligament-bone interface

机译:在体外研究组织工程细胞 - 肌腱复合物,模拟韧带骨界面的过渡架构

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Restoration of the transitional ligament-bone interface is critical for graft-bone integration. We postulated that an allogenic scaffold mimicking the fibrogenic, chondrogenic, and osteogenic transition gradients could physiologically promote ligament-bone incorporation. The aim of this study was to construct and characterize a composite tendon scaffold with a continuous and heterogeneous transition region mimicking a native ligament insertion site. Genetically modified heterogeneous cell populations were seeded within specific regions of decellularized rabbit Achilles tendons to fabricate a stratified scaffold containing three biofunctional regions supporting fibrogenesis, chondrogenesis, and osteogenesis. The observed morphology, architecture, cytocompatibility, and biomechanics of the scaffolds demonstrated their improved bio-physico-chemical properties. The formation of the transitional regions was augmented via enhanced delivery of two transcription factors, sex determining region Y-box 9 and runt-related transcription factor 2, which also triggered early up-regulated expression of cartilage- and bone-relevant markers, according to quantitative PCR and immunoblot analyses. Gradient tissue-specific matrix formation was also confirmed within the predesignated regions via histological staining and immunofluorescence assays. These results suggest that a transitional interface could be replicated on an engineered tendon through stratified tissue integration. The scaffold offers the advantages of a multitissue transition involving controlled cellular interactions and matrix heterogeneity, which can be applied for the regeneration of the ligament-bone interface.
机译:过渡性韧带骨界面的恢复对于移植物 - 骨集成至关重要。我们假设模仿纤维纤维原,软骨和成骨和成骨过渡梯度模拟的同种异体支架可以生理促进韧带骨掺入。该研究的目的是用模拟天然韧带插入部位的连续和异质过渡区域构建和表征复合肌腱支架。将遗传修饰的异质细胞群在脱细胞的兔阿基血管肌腱区域内接种,以制造含有三个含有纤维发生,软骨发生和骨肉发生的生物功能区域的分层支架。观察到的形态,结构,细胞织体和生物力学证明了它们改善的生物物理化学性质。通过增强的两种转录因子,性别测定区域Y型盒9和runt相关转录因子2增加过渡区域的形成,这也引发了软骨和骨相关标记的早期上调表达的早期上调表达。定量PCR和免疫印迹分析。还通过组织学染色和免疫荧光测定在预测区域内确认梯度组织特异性基质形成。这些结果表明,通过分层组织积分可以在工程肌腱上复制过渡界面。脚手架提供了涉及受控细胞相互作用和基质异质性的多簇转变的优点,这可以应用于韧带骨界面的再生。

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