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弱电磁场可加速成肌细胞融合。

Weak Electromagnetic Fields Accelerate Fusion of Myoblasts.

机构信息

Faculty of Life Sciences, Bar Ilan University, Ramat Gan 52900, Israel.

Department of Physics, Bar Ilan University, Ramat Gan 52900, Israel.

出版信息

Int J Mol Sci. 2021 Apr 23;22(9):4407. doi: 10.3390/ijms22094407.

Abstract

Weak electromagnetic fields (WEF) alter Ca handling in skeletal muscle myotubes. Owing to the involvement of Ca in muscle development, we investigated whether WEF affects fusion of myoblasts in culture. Rat primary myoblast cultures were exposed to WEF (1.75 µT, 16 Hz) for up to six days. Under control conditions, cell fusion and creatine kinase (CK) activity increased in parallel and peaked at 4-6 days. WEF enhanced the extent of fusion after one and two days (by 40%) vs. control, but not thereafter. Exposure to WEF also enhanced CK activity after two days (almost four-fold), but not afterwards. Incorporation of H-thymidine into DNA was enhanced by one-day exposure to WEF (40%), indicating increased cell replication. Using the potentiometric fluorescent dye di-8-ANEPPS, we found that exposure of cells to 150 mM KCl resulted in depolarization of the cell membrane. However, prior exposure of cells to WEF for one day followed by addition of KCl resulted in hyperpolarization of the cell membrane. Acute exposure of cells to WEF also resulted in hyperpolarization of the cell membrane. Twenty-four hour incubation of myoblasts with gambogic acid, an inhibitor of the inward rectifying K channel 2.1 (K2.1), did not affect cell fusion, WEF-mediated acceleration of fusion or hyperpolarization. These data demonstrate that WEF accelerates fusion of myoblasts, resulting in myotube formation. The WEF effect is associated with hyperpolarization but WEF does not appear to mediate its effects on fusion by activating K2.1 channels.

摘要

弱电磁场 (WEF) 改变骨骼肌成肌细胞中的钙处理。由于钙参与肌肉发育,我们研究了 WEF 是否会影响培养中的成肌细胞融合。将大鼠原代成肌细胞培养物暴露于 WEF(1.75 µT,16 Hz)中长达六天。在对照条件下,细胞融合和肌酸激酶 (CK) 活性平行增加,在 4-6 天达到峰值。WEF 使融合程度在 1 天和 2 天(增加约 40%)相对于对照增强,但此后不会。暴露于 WEF 也在 2 天后增强 CK 活性(近四倍),但此后不会。氚胸腺嘧啶核苷掺入 DNA 被 1 天的 WEF 暴露增强(增加约 40%),表明细胞复制增加。使用电位荧光染料 di-8-ANEPPS,我们发现将细胞暴露于 150 mM KCl 会导致细胞膜去极化。然而,先前将细胞暴露于 WEF 一天,然后加入 KCl 会导致细胞膜超极化。细胞的急性 WEF 暴露也会导致细胞膜超极化。24 小时孵育成肌细胞用 Gambogic 酸,一种内向整流钾通道 2.1(K2.1)的抑制剂,不会影响细胞融合,WEF 介导的融合加速或超极化。这些数据表明 WEF 加速成肌细胞融合,导致肌管形成。WEF 效应与超极化有关,但 WEF 似乎没有通过激活 K2.1 通道来介导其对融合的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3ba/8122904/a81b4ee617bf/ijms-22-04407-g001.jpg

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