首页> 外文期刊>Bioelectromagnetics: Journal of the Bioelectromagnetics Society >Exposure to a MRI-type high-strength static magnetic field stimulates megakaryocytic/erythroid hematopoiesis in CD34+ cells from human placental and umbilical cord blood.
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Exposure to a MRI-type high-strength static magnetic field stimulates megakaryocytic/erythroid hematopoiesis in CD34+ cells from human placental and umbilical cord blood.

机译:暴露于 MRI 型高强度静态磁场会刺激人胎盘血和脐带血中 CD34+ 细胞的巨核细胞/红系造血。

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摘要

The biological response after exposure to a high-strength static magnetic field (SMF) has recently been widely discussed from the perspective of possible health benefits as well as potential adverse effects. To clarify this issue, CD34+ cells from human placental and umbilical cord blood were exposed under conditions of high-strength SMF in vitro. The high-strength SMF exposure system was comprised of a magnetic field generator with a helium-free superconducting magnet with built-in CO2 incubator. Freshly prepared CD34 cells were exposed to a 5 tesla (T) SMF with the strongest magnetic field gradient (41.7 T/m) or a 10 T SMF without magnetic field gradient for 4 or 16 h. In the harvested cells after exposure to 10 T SMF for 16 h, a significant increase of hematopoietic progenitors in the total burst-forming unit erythroid- and megakaryocytic progenitor cells-derived colony formation was observed, thus producing 1.72- and 1.77-fold higher than the control, respectively. Furthermore, early hematopoiesis-related and cell cycle-related genes were found to be significantly up-regulated by exposure to SMF. These results suggest that the 10 T SMF exposure may change gene expressions and result in the specific enhancement of megakaryocytic/erythroid progenitor (MEP) differentiation from pluripotent hematopoietic stem cells and/or the proliferation of bipotent MEP.
机译:最近,从可能的健康益处和潜在的不利影响的角度,广泛讨论了暴露于高强度静态磁场(SMF)后的生物反应。为了澄清这个问题,将人胎盘血和脐带血中的CD34+细胞暴露在体外高强度SMF条件下。高强度 SMF 暴露系统由一个磁场发生器、一个无氦超导磁体和内置 CO2 培养箱组成。将新鲜制备的 CD34 细胞暴露于具有最强磁场梯度 (41.7 T/m) 的 5 特斯拉 (T) SMF 或无磁场梯度的 10 T SMF 中 4 或 16 小时。在暴露于10 T SMF16小时后收获的细胞中,观察到总爆发形成单位红细胞和巨核细胞祖细胞衍生的集落形成中造血祖细胞显着增加,因此分别比对照高1.72倍和1.77倍。此外,发现早期造血相关基因和细胞周期相关基因因暴露于 SMF 而显着上调。这些结果表明,10 T SMF 暴露可能会改变基因表达,并导致巨核细胞/红系祖细胞 (MEP) 从多能造血干细胞分化和/或双能 MEP 增殖的特异性增强。

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