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Bioengineering a tendon-like substitute: adult stem cell behavior in aligned fibrous scaffolds and stimulating culturing environments

机译:生物工程的肌腱样替代品:成体干细胞行为在对齐的纤维支架和刺激培养环境中

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The development of TE constructs based on biomimetic scaffold design and stem cells explores a promising system for regeneration with potential for tendon application. The stimulation into tenogenic lineage was demonstrated by the elongated and aligned cell morphology, the presence of a tenascin-C rich ECM and the expression of gene markers, typically associated to tendon tissues. The results indicate that the differentiation was regulated by the fiber arrangement and also by the mechanical stimulus provided by the flow perfusion bioreactor. Aligned SPCL-based scaffolds promoted the colonization and tenogenic differentiation of hASCs cultured in basal medium in static and dynamic conditions. Also, flow perfused constructs showed a higher expression of tendon related genes, namely collagen I, III and tenascin-C. Thus, scaffolds architecture and mechanical stimulation may be determinant at tendon regeneration approaches in order to closely match the properties and functionality of native tendons. Longer culture periods will be considered in future experiments in order to better understand flow perfusion stimulus on hASCs.
机译:基于仿生支架设计和干细胞的TE构建体的发展探讨了具有肌腱应用潜力的再生系统的有希望的系统。通过细长和对准的细胞形态来证明对遗传谱系的刺激,对齐的ECM的存在和基因标志物的表达,通常与肌腱组织相关。结果表明,分化是通过纤维装置调节的,并且还通过流动灌注生物反应器提供的机械刺激来调节。对齐的基于SPCL的支架促进了在静态和动态条件下在基础培养基中培养的HASC的定植和遗传分化。而且,流灌注构建体显示出肌腱相关基因的更高表达,即胶原蛋白I,III和Tenascin-C。因此,脚手架结构和机械刺激可以是肌腱再生方法的决定因素,以便与天然肌腱的性质和功能密切匹配。将在未来的实验中考虑更长的培养期,以便更好地了解HASC的流量灌注刺激。

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