首页> 美国卫生研究院文献>Springer Open Choice >Static magnetic field enhances synthesis and secretion of membrane-derived microvesicles (MVs) rich in VEGF and BMP-2 in equine adipose-derived stromal cells (EqASCs)—a new approach in veterinary regenerative medicine
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Static magnetic field enhances synthesis and secretion of membrane-derived microvesicles (MVs) rich in VEGF and BMP-2 in equine adipose-derived stromal cells (EqASCs)—a new approach in veterinary regenerative medicine

机译:静磁场可增强马脂肪基质细胞(EqASC)中富含VEGF和BMP-2的膜衍生微囊(MV)的合成和分泌-兽用再生医学的新方法

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摘要

The aim of this work study was to evaluate the cytophysiological activity of equine adipose-derived stem cells (ASCs) cultured under conditions of static magnetic field. Investigated cells were exposed to a static magnetic field (MF) with the intensity of 0.5 T. In order to investigate the effects of magnetic field on stem cell signaling, the localization and density and content of microvesicles (MVs) as well as morphology, ultrastructure, and proliferation rate of equine ASCs were evaluated. Results showed that potential of equine adipose-derived mesenchymal stem cells was accelerated when magnetic field was applied. Resazurin-based assay indicated that the cells cultured in the magnetic field reached the population doubling time earlier and colony-forming potential of equine ASCs was higher when cells were cultured under magnetic field conditions. Morphological and ultrastructural examination of equine ASCs showed that the exposure to magnetic field did not cause any significant changes in cell morphology whereas the polarity of the cells was observed under the magnetic field conditions in ultrastructural examinations. Exposition to MF resulted in a considerable increase in the number of secreted MVs—we have clearly observed the differences between the numbers of MVs shed from the cells cultured under MF in comparison to the control culture and were rich in growth factors. Microvesicles derived from ASCs cultured in the MF condition might be utilized in the stem cell-based treatment of equine musculoskeletal disorders and tendon injuries.
机译:这项工作研究的目的是评估在静态磁场条件下培养的马脂肪干细胞(ASC)的细胞生理活性。被研究的细胞暴露于强度为0.5 T的静磁场(MF)中。为了研究磁场对干细胞信号传导,微囊泡(MVs)的定位,密度和含量以及形态,超微结构的影响,并评估了马ASC的增殖率。结果表明,当施加磁场时,马脂肪间充质干细胞的潜能得到了提高。基于刃天青的测定表明,当在磁场条件下培养细胞时,在磁场中培养的细胞较早到达群体倍增时间,并且马ASC的集落形成潜能更高。马ASC的形态学和超微结构检查表明,暴露于磁场不会引起细胞形态的任何显着变化,而在磁场条件下的超微结构检查中观察到细胞的极性。暴露于MF导致分泌的MV数量显着增加-我们已经清楚地观察到,与对照培养相比,在MF下培养的细胞中脱落的MV数量有所不同,并且富含生长因子。在MF条件下培养的ASC衍生的微泡可用于以干细胞为基础的马肌肉骨骼疾病和肌腱损伤治疗。

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