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A microelectrode array chip for osteogenic differentiation of mesenchymal stem cells under electrical stimulation

机译:用于电刺激下间充质干细胞的骨质发生分化的微电极阵列芯片

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Electrical stimulation (ES) as an easy and effective inducing method has been widely used in induction differentiation of stem cells, e.g. osteogenic differentiation of mesenchymal stem cells (MSCs) for bone healing and bone tissue therapies. However, the micro-effect of an inhomogeneous electric field has rarely been investigated for ES in induction differentiation, and conventionally used ex situ assays may preclude accurate assessment due to variation from cell inoculation and treatments. Here, a novel electrical stimulation method with a microelectrode array chip is proposed for osteogenic differentiation of MSCs. The electric field applied onto the MSCs by the microelectrode array is designed similarly with a natural aggregation distribution of differentiated MSCs. The proposed ES method accelerates osteoblast proliferation and differentiation in the electrode array region and generates a larger amount of mineralized deposits, which are assayed via in situ alizarin red staining and morphology observation as well as immunocytochemistry. In addition, this method allows a direct in situ assessment to compare the osteogenic differentiation of MSCs with and without ES on a single chip to avoid culture environment difference. The method provides a fundamental platform for investigating induced differentiation of stem cells and allows integration with multifunctional cell assays to achieve in situ tracking for the differentiation process of stem cells.
机译:电刺激(ES)作为一种易于有效的诱导方法,已广泛用于干细胞的诱导分化中,例如。间充质干细胞(MSCs)对骨愈合和骨组织疗法的骨质发生分化。然而,在感应分化中很少研究了不均匀电场的微观效应,并且通常使用的EX原位测定可能导致由于细胞接种和治疗的变异而妨碍准确的评估。这里,提出了一种具有微电极阵列芯片的新型电刺激方法,用于MSCs的成骨分化。通过微电极阵列施加到MSCs上的电场与分化的MSCs的自然聚集分布类似地设计。该方法的ES方法加速了电极阵列区域中的成骨细胞增殖和分化,并产生较大量的矿化沉积物,其通过原位茜素红染色和形态观察以及免疫细胞化学进行测定。此外,该方法允许直接进入原位评估,以比较MSC的骨质发生分化与单个芯片上的MSCs,以避免培养环境差异。该方法提供了一种用于研究干细胞的诱导分化的基本平台,并允许与多功能细胞测定的集成以实现干细胞分化过程的原位跟踪。

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