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首页> 外文期刊>The Open Biochemistry Journal >Short Exposures to an Extremely Low-Frequency Magnetic Field (ELF MF) Enhance Protein but not mRNA Alkaline Phosphatase Expression in Human Osteosarcoma Cells
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Short Exposures to an Extremely Low-Frequency Magnetic Field (ELF MF) Enhance Protein but not mRNA Alkaline Phosphatase Expression in Human Osteosarcoma Cells

机译:短时间暴露于极低频磁场(ELF MF)会增强蛋白质,但不会增强人骨肉瘤细胞中mRNA碱性磷酸酶的表达。

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Background:Among electromagnetic fields treatments used in orthopedics, extremely low-frequency magnetic fields (ELF MF) need more detailed information about the molecular mechanisms of their effects and exposure conditions.Objective:Evaluation of the effects of an ELF MF exposure system, recently introduced among current clinical treatments for fracture healing and other bone diseases, on Alkaline Phosphatase (ALP) activity and expression in a human osteosarcoma cell line (SaOS-2), as marker typically associated to osteogenesis and bone tissue regeneration.Method:Cells were exposed to the ELF MF physical stimulus (75 Hz, 1.5 mT) for 1h. Cell viability, enzymatic activity, protein and mRNA expression of alkaline phosphatase were then measured at different times after exposure (0, 4 and 24 h).Results:Data demonstrate that this signal is active on an osteogenic process already one hour after exposure. Treatment was, in fact, capable, even after an exposure shorter than those commonly used in clinical applications, to significantly up-regulate alkaline phosphatase enzymatic activity. This regulation is produced essentially through an increase of ALP protein level, without changes of its mRNA concentration, while assessed magnetic field did not affect cell growth and viability and did not produce temperature variations.Conclusion:Tested low-frequency magnetic field affects cellular ALP expression with a posttranslational mechanism, without the involvement of regulations at gene transcription and mRNA level. This molecular effect is likely produced even within treated tissues during therapies with this signal and may be implicated in the induction of observed effects in treated patients.
机译:背景:在整形外科中使用的电磁场治疗中,极低频磁场(ELF MF)需要更详细的信息来了解其作用和暴露条件的分子机制。目的:最近对ELF MF暴露系统的作用进行评估在目前用于骨折愈合和其他骨疾病的临床治疗方法中,碱性磷酸酶(ALP)的活性和在人骨肉瘤细胞系(SaOS-2)中的表达通常是与成骨和骨组织再生相关的标志物。 ELF MF物理刺激(75 Hz,1.5 mT)持续1h。然后在暴露后的不同时间(0、4和24小时)测量碱性磷酸酶的细胞活力,酶活性,蛋白质和mRNA表达。结果:数据表明,该信号在暴露后一小时对成骨过程具有活性。实际上,即使在比临床上通常使用的暴露时间短的暴露时间后,治疗仍能够显着上调碱性磷酸酶的酶活性。该调节基本上是通过增加ALP蛋白水平而产生的,而其mRNA浓度没有变化,而所评估的磁场并未影响细胞生长和活力,也不会产生温度变化。结论:经测试的低频磁场会影响细胞ALP表达具有翻译后机制,而无需参与基因转录和mRNA水平的调控。该分子效应甚至可能在治疗期间在具有该信号的治疗组织内产生,并且可能与在治疗患者中诱导观察到的效应有关。

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