Istituto di Clinica Ortopedica Università di Ferrara, Corso Giovecca 203, 44100 Ferrara, Italy.
Clin Orthop Relat Res. 2010 Aug;468(8):2260-77. doi: 10.1007/s11999-010-1341-5. Epub 2010 Apr 13.
BACKGROUND: Although pulsed electromagnetic fields (PEMFs) are used to treat delayed unions and nonunions, their mechanisms of action are not completely clear. However, PEMFs are known to affect the expression of certain genes. QUESTIONS/PURPOSES: We asked (1) whether PEMFs affect gene expression in human osteoblastlike cells (MG63) in vitro, and (2) whether and to what extent stimulation by PEMFs induce cell proliferation and differentiation in MG-63 cultures. METHODS: We cultured two groups of MG63 cells. One group was treated with PEMFs for 18 hours whereas the second was maintained in the same culture condition without PEMFs (control). Gene expression was evaluated throughout cDNA microarray analysis containing 19,000 genes spanning a substantial fraction of the human genome. RESULTS: PEMFs induced the upregulation of important genes related to bone formation (HOXA10, AKT1), genes at the transductional level (CALM1, P2RX7), genes for cytoskeletal components (FN1, VCL), and collagenous (COL1A2) and noncollagenous (SPARC) matrix components. However, PEMF induced downregulation of genes related to the degradation of extracellular matrix (MMP-11, DUSP4). CONCLUSIONS AND CLINICAL RELEVANCE: PEMFs appear to induce cell proliferation and differentiation. Furthermore, PEMFs promote extracellular matrix production and mineralization while decreasing matrix degradation and absorption. Our data suggest specific mechanisms of the observed clinical effect of PEMFs, and thus specific approaches for use in regenerative medicine.
背景:尽管脉冲电磁场(PEMFs)被用于治疗延迟愈合和不愈合,但它们的作用机制尚不完全清楚。然而,已知 PEMFs 会影响某些基因的表达。
问题/目的:我们询问了(1)PEMFs 是否会影响体外人成骨样细胞(MG63)中的基因表达,以及(2)PEMFs 的刺激是否以及在何种程度上诱导 MG-63 培养物中的细胞增殖和分化。
方法:我们培养了两组 MG63 细胞。一组用 PEMFs 处理 18 小时,而另一组在没有 PEMFs 的相同培养条件下维持(对照)。通过包含涵盖人类基因组大部分的 19,000 个基因的 cDNA 微阵列分析来评估基因表达。
结果:PEMFs 诱导了与骨形成(HOXA10、AKT1)、转导水平基因(CALM1、P2RX7)、细胞骨架成分(FN1、VCL)以及胶原(COL1A2)和非胶原(SPARC)基质成分相关的重要基因的上调。然而,PEMF 诱导了细胞外基质降解相关基因(MMP-11、DUSP4)的下调。
结论和临床相关性:PEMFs 似乎诱导细胞增殖和分化。此外,PEMFs 促进细胞外基质的产生和矿化,同时减少基质降解和吸收。我们的数据表明了观察到的 PEMFs 临床效果的具体机制,从而为再生医学提供了具体的方法。
Clin Orthop Relat Res. 2010-4-13
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