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Tenogenic Induction of Human MSCs by Anisotropically Aligned Collagen Biotextiles

机译:各向异性排列的胶原生物纺织品对人间充质干细胞的张力诱导。

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摘要

A novel biofabrication modality, electrophoretic compaction with macromolecular alignment, was utilized to make collagen threads that mimic the native tendon’s structure and mechanical properties. A device with kinematic electrodes was designed to fabricate collagen threads in continuous length. For the first time, a 3D-biotextile was woven purely from collagen. Mechanical properties and load-displacement behavior of the biotextile mimicked those of the native tendon while presenting a porosity of 80%. The open pore network facilitated cell seeding across the continuum of the bioscaffold. Mesenchymal stem cells (MSCs) seeded in the woven scaffold underwent tenogenic differentiation in the absence of growth factors and synthesized a matrix that was positive for tenomodulin, COMP and type I collagen. Up-regulation of tenomodulin, a tendon specific marker, was 11.6 ± 3.5 fold, COMP was up-regulated 16.7 ± 5.5 fold, and Col I was up-regulated 6.9 ± 2.7 fold greater on ELAC threads when compared to randomly oriented collagen gels. These results demonstrate that a bioscaffold woven by using collagen threads with densely compacted and anisotropically aligned substrate texture stimulates tenogenesis topographically, rendering the electrochemically aligned collagen as a promising candidate for functional repair of tendons and ligaments.
机译:一种新的生物制造方式,即具有大分子排列的电泳压实技术,被用于制造模仿天然肌腱结构和机械性能的胶原蛋白线。具有运动电极的设备被设计为连续制造胶原线。第一次,纯胶原蛋白编织了3D生物织物。生物织物的机械性能和载荷位移行为模仿了天然肌腱的力学性能和载荷位移性能,但孔隙率为80%。开孔网络促进了生物支架整个区域的细胞播种。在不存在生长因子的情况下,接种在编织支架中的间充质干细胞(MSC)进行了肌腱分化,并合成了一种对肌腱调节蛋白,COMP和I型胶原呈阳性的基质。与随机取向的胶原蛋白凝胶相比,肌腱特异性标志物Tenomodulin的上调为11.6±3.5倍,COMP的上调为16.7±5.5倍,Col I的上调为ELAC螺纹上的6.9±2.7倍。这些结果表明,通过使用具有紧密压实和各向异性排列的底物纹理的胶原蛋白线编织的生物支架在地形上刺激肌腱形成,使电化学排列的胶原蛋白成为腱和韧带功能修复的有前途的候选者。

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