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Alignment and Elongation of Human Adipose-Derived Stem Cells in Response to Direct-Current Electrical Stimulation

机译:响应于直流电刺激的人脂肪衍生的干细胞的对准和伸长

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In vivo, direct current electric fields are present during embryonic development and wound healing. In vitro, direct current (DC) electric fields induce directional cell migration and elongation. For the first time, we demonstrate that cultured human adipose tissue-derived stem cells (hASCs) respond to the presence of direct-current electric fields. Cells were stimulated for 2-4 hours with DC electric fields of 6 V/cm that were similar to those encountered in vivo post-injury. Upon stimulation, hASCs were observed to elongate and align perpendicularly to the applied electric field, disassemble gap junctions, and upregulate the expression of genes for connexin-43, thrombomodulin, vascular endothelial growth factor, and fibroblast growth factor. In separate related studies, human epicardial fat-derived stem cells (heASCs) were also observed to align and elongate. It is interesting that the morphological and phenotypic characteristics of mesenchymal stem cells derived both from liposuction aspirates and from cardiac fat can be modulated by direct current electric fields. In further studies, we will quantify the effects of the electrical fields in the context of wound healing.
机译:在体内,在胚胎发育和伤口愈合期间存在直流电场。在体外,直流直流(DC)电场诱导定向细胞迁移和伸长率。我们首次证明培养的人脂肪组织衍生的干细胞(HASC)响应直流电场的存在。用6V / cm的直流电场刺激细胞2-4小时,其与体内损伤后遇到的那些相似。在刺激后,观察到hASCs伸长并对准垂直于所施加的电场,拆机间隙连接,并上调基因的表达对于连接蛋白43,血栓调节蛋白,血管内皮生长因子和成纤维细胞生长因子。在单独的相关研究中,还观察到人心外膜脂肪衍生的干细胞(HEASC)对齐和伸长。值得注意的是,通过直流电场可以调节源自吸脂酸盐和心脏脂肪的间充质干细胞的形态学和表型特征。在进一步的研究中,我们将量化电场在伤口愈合的背景下的影响。

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