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Synergistic effect of defined artificial extracellular matrices and pulsed electric fields on osteogenic differentiation of human MSCs

机译:定义的人工细胞外基质和脉冲电场对人MSCs成骨分化的协同作用

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In vivo, bone formation is a complex, tightly regulated process, influenced by multiple biochemical and physical factors. To develop a vital bone tissue engineering construct, all of these individual components have to be considered and integrated to gain an in vivo-like stimulation of target cells. The purpose of the present studies was to investigate the synergistic role of defined biochemical and physical microenvironments with respect to osteogenic differentiation of human mesenchymal stem cells (MSCs). Biochemical microenvironments have been designed using artificial extracellular matrices (aECMs), containing collagen I (coll) and glycosaminoglycans (GAGs) like chondroitin sulfate (CS), or a high-sulfated hyaluronan derivative (sHya), formulated as coatings on three-dimensional poly(caprolactone-co-lactide) (PCL) scaffolds. As part of the physical microenvironment, cells were exposed to pulsed electric fields via transformer-like coupling (TC). Results showed that aECM containing sHya enhanced osteogenic differentiation represented by increases in ALP activity and gene-expression (RT-qPCR) of several bone-related proteins (RUNX-2, ALP, OPN). Electric field stimulation alone did not influence cell proliferation, but osteogenic differentiation was enhanced if osteogenic supplements were provided, showing synergistic effects by the combination of sHya and electric fields. These results will improve the understanding of bone regeneration processes and support the development of effective tissue engineered bone constructs.
机译:在体内,骨形成是一个复杂的,受严格控制的过程,受多种生化和物理因素的影响。为了开发重要的骨组织工程构造,必须考虑并整合所有这些单独的组件,以获得对靶细胞的体内样刺激。本研究的目的是研究确定的生化和物理微环境对人间充质干细胞(MSCs)成骨分化的协同作用。已使用人工细胞外基质(aECM)设计了生化微环境,其中包含胶原I(coll)和糖胺聚糖(GAG),例如硫酸软骨素(CS)或高硫酸化乙酰透明质酸衍生物(sHya),这些物质被配制为三维聚合物上的涂层(己内酯-丙交酯)(PCL)支架。作为物理微环境的一部分,细胞通过类似变压器的耦合(TC)暴露在脉冲电场中。结果表明,含有sHya的aECM增强了成骨分化,其表现为ALP活性的提高和几种骨相关蛋白(RUNX-2,ALP,OPN)的基因表达(RT-qPCR)。单独的电场刺激并不影响细胞增殖,但是如果提供成骨补充剂,则成骨分化会增强,通过sHya和电场的结合显示协同作用。这些结果将增进对骨再生过程的理解,并支持有效的组织工程化骨构造的发展。

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