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Development of a novel smart scaffold for human skeletal muscle regeneration

机译:新型人类骨骼肌再生智能支架的开发

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Skeletal muscle defects are notoriously difficult to manage and the current methods used are associated with many limitations. Engineered skeletal muscle tissue has the potential to provide a solution that circumvents these disadvantages. Our previous work has identified a novel three-dimensionally aligned degradable phosphate glass fibre scaffold that can support myoblast differentiation and maturation. This current study has further developed the scaffold by encasing the fibres within a collagen gel to produce a smart composite scaffold that provides key biomimetic cues and supports the formation of a tissue that may be implanted in vivo. The constructs formed were approximately 30mm long and microscopic examination confirmed favourable unidirectional cell alignment. There was good cell survival, and gene expression studies demonstrated upregulation of the myogenic regulatory factors and developmental and adult myosin heavy chain isoforms indicating myofibre formation and maturation respectively. Compared with the three-dimensional glass fibre scaffolds, the composite scaffolds had later gene upregulation, however, the use of collagen gels reinforced with degradable aligned glass fibres offers the opportunity to create a tissue analogue that can be easily manipulated. Furthermore, the glass fibre ends could support tendon/bone formation, and the channels formed as the fibres degrade could allow for vascular ingrowth. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:众所周知,骨骼肌缺陷很难处理,目前使用的方法存在许多局限性。工程化的骨骼肌组织具有提供解决这些缺点的解决方案的潜力。我们之前的工作已经确定了一种新型的三维排列的可降解磷酸盐玻璃纤维支架,该支架可以支持成肌细胞的分化和成熟。该当前研究通过将纤维包裹在胶原蛋白凝胶中以产生智能复合复合材料支架而进一步开发了该复合材料支架,该复合材料支架提供了关键的仿生线索并支持可以在体内植入的组织的形成。形成的构建体长约30mm,显微镜检查证实有利的单向细胞排列。细胞具有良好的存活率,基因表达研究表明,肌原性调节因子和发育型和成年型肌球蛋白重链亚型的上调分别表明肌纤维的形成和成熟。与三维玻璃纤维支架相比,复合支架具有更高的基因上调作用,但是,使用可降解的排列玻璃纤维增​​强的胶原蛋白凝胶为创建易于操作的组织类似物提供了机会。此外,玻璃纤维末端可以支持腱/骨的形成,并且随着纤维降解而形成的通道可以允许血管向内生长。版权所有(c)2013 John Wiley&Sons,Ltd.

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