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暴露于脉冲电磁场的成骨样细胞中多胺、c-myc和c-fos基因表达的变化

Changes in polyamines, c-myc and c-fos gene expression in osteoblast-like cells exposed to pulsed electromagnetic fields.

作者信息

De Mattei Monica, Gagliano Nicoletta, Moscheni Claudia, Dellavia Claudia, Calastrini Carla, Pellati Agnese, Gioia Magda, Caruso Angelo, Stabellini Giordano

机构信息

Department of Morphology and Embryology, Section of Histology and Embryology, University of Ferrara, Italy.

出版信息

Bioelectromagnetics. 2005 Apr;26(3):207-14. doi: 10.1002/bem.20068.

Abstract

Pulsed electromagnetic field (PEMF) stimulation promotes the healing of fractures in humans, though its effect is little known. The processes of tissue repair include protein synthesis and cell differentiation. The polyamines (PA) are compounds playing a relevant role in both protein synthesis processes and cell differentiation through c-myc and c-fos gene activation. Since several studies have demonstrated that PEMF acts on embryonic bone cells, human osteoblast-like cells and osteosarcoma TE-85 cell line, in this study we analyzed the effect on cell PAs, proliferation, and c-myc and c-fos gene expression of MG-63 human osteoblast-like cell cultures exposed to a clinically useful PEMF. The cells were grown in medium with 0.5 or 10% fetal calf serum (FCS). c-myc and c-fos gene expressions were determined by RT-PCR. Putrescine (PUT), spermidine (SPD), or spermine (SPM) levels were evaluated by HPLC. [(3)H]-thymidine was added to cultures for DNA analysis. The PEMF increased [(3)H]-thymidine incorporation (P < or = .01), while PUT decreased after treatment (P < or = .01); SPM and SPD were not significantly affected. c-myc was activated after 1 h and downregulated thereafter, while c-fos mRNA levels increased after 0.5 h and then decreased. PUT, SPD, SPM trends, and [(3)H]-thymidine incorporation were significantly related to PEMF treatment. These results indicate that exposure to PEMF exerts biological effects on the intracellular PUT of MG-63 cells and DNA synthesis, influencing the genes encoding c-myc and c-fos gene expression. These observations provide evidence that in vitro PEMF affects the mechanisms involved in cell proliferation and differentiation.

摘要

脉冲电磁场(PEMF)刺激可促进人类骨折愈合,但其作用鲜为人知。组织修复过程包括蛋白质合成和细胞分化。多胺(PA)是一类化合物,通过激活c-myc和c-fos基因在蛋白质合成过程和细胞分化中发挥相关作用。由于多项研究表明PEMF作用于胚胎骨细胞、人成骨样细胞和骨肉瘤TE-85细胞系,因此在本研究中,我们分析了临床可用的PEMF对MG-63人成骨样细胞培养物中细胞PA、增殖以及c-myc和c-fos基因表达的影响。细胞在含有0.5%或10%胎牛血清(FCS)的培养基中生长。通过RT-PCR测定c-myc和c-fos基因表达。通过高效液相色谱法评估腐胺(PUT)、亚精胺(SPD)或精胺(SPM)水平。将[³H]-胸腺嘧啶核苷添加到培养物中进行DNA分析。PEMF增加了[³H]-胸腺嘧啶核苷掺入量(P≤0.01),而处理后PUT减少(P≤0.01);SPM和SPD未受到显著影响。c-myc在1小时后被激活,随后下调;而c-fos mRNA水平在0.5小时后升高,然后下降。PUT、SPD、SPM趋势以及[³H]-胸腺嘧啶核苷掺入量与PEMF处理显著相关。这些结果表明,暴露于PEMF对MG-63细胞的细胞内PUT和DNA合成产生生物学效应,影响编码c-myc和c-fos基因表达的基因。这些观察结果提供了证据,表明体外PEMF影响细胞增殖和分化所涉及的机制。

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