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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Magnetic field-induced Ca2+ intake by mesenchymal stem cells is mediated by intracellular Zn2+ and accompanied by a Zn2+ influx
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Magnetic field-induced Ca2+ intake by mesenchymal stem cells is mediated by intracellular Zn2+ and accompanied by a Zn2+ influx

机译:间充质干细胞的磁场诱导的Ca2 +摄入由细胞内Zn2 +介导并伴有Zn2 +流入

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摘要

Chronic exposure to magnetic fields (MFs) has a diverse range of effects on biological systems but definitive molecular mechanisms of the interaction remain largely unknown. One of the most frequently reported effects of MF exposure is an elevated concentration of intracellular Ca2+ through disputed pathways. Other prominent effects include increased oxidative stress and upregulation of neural markers through EGFR activation in stem cells. Further characterization of cascades triggered by MF exposure is hindered by the phenotype diversity of biological models used in the literature. In an attempt to reveal more mechanistic data in this field, we combined the most commonly used biological model and MF parameters with the most commonly reported effects of MFs.
机译:慢性暴露于磁场(MFS)对生物系统具有各种影响,但相互作用的最终分子机制仍然很大程度上是未知的。 MF暴露的最常报告的效果之一是通过有争议的途径升高细胞内Ca2 +的浓度。 其他突出的效果包括通过干细胞的EGFR活化增加氧化应激和神经标记的上调。 通过在文献中使用的生物模型的表型多样性阻碍了由MF暴露引发的级联的进一步表征。 在尝试揭示该领域的机械数据中,我们将最常用的生物模型和MF参数组合于MFS最常见的MFS效果。

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