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Combined decellularisation and dehydration improves the mechanical properties of tissue-engineered sinews

机译:脱细胞和脱水相结合可改善组织工程肌腱的机械性能

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Novel sources of replacement sinews are needed to repair damaged tissue after injury. The current methods of repair ultilise autografts, allografts or xenografts, although each method has distinct disadvantages that limit their success. Decellularisation of harvested tissues has been previously investigated for sinew repair with the long-term aim of repopulating the structure with autologous cells. Although this procedure shows promise, the demand for donor scaffolds will always outweigh supply. Here, we report the fabrication of fibrin-based tissue-engineered sinews, which can be decellularised, dehydrated and stored. The sinews may then be rehydrated and repopulated with an autologous cell population. In addition to enabling production of patient-specific implants, interestingly, the process of combined decellularisation, dehydration and rehydration enhanced the mechanical properties of the sinew. The treated sinews exhibited a 2.6-fold increase in maximum load and 8-fold increase in ultimate tensile strength when compared with the control group (p < 0.05 in both cases).
机译:需要新的替代肌腱来源来修复受伤后受损的组织。当前的修复自体移植,同种异体移植或异种移植的方法,尽管每种方法都有明显的缺点,限制了它们的成功。先前已经对收获的组织的脱细胞进行了肌腱修复研究,其长期目标是用自体细胞重新填充结构。尽管这一程序显示出希望,但对供体支架的需求将始终超过供应。在这里,我们报告基于纤维蛋白的组织工程肌腱的制造,可以将其脱细胞,脱水和储存。然后可以将筋骨再水化并用自体细胞群重新填充。有趣的是,除了能够生产针对患者的植入物外,脱细胞,脱水和再水合的过程还增强了筋的机械性能。与对照组相比,处理过的肌腱最大负荷增加了2.6倍,极限抗拉强度增加了8倍(两种情况下p <0.05)。

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