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成骨细胞模型的选择对于研究电磁刺激对体外成骨作用的影响至关重要。

Choice of osteoblast model critical for studying the effects of electromagnetic stimulation on osteogenesis in vitro.

作者信息

Bique Anna-Maria, Kaivosoja Emilia, Mikkonen Marko, Paulasto-Kröckel Mervi

机构信息

a Aalto University Department of Electrical Engineering and Automation , School of Electrical Engineering , Espoo , Finland.

出版信息

Electromagn Biol Med. 2016;35(4):353-64. doi: 10.3109/15368378.2016.1138124. Epub 2016 Jun 29.

Abstract

The clinical benefits of electromagnetic field (EMF) therapy in enhancing osteogenesis have been acknowledged for decades, but agreement regarding the underlying mechanisms continues to be sought. Studies have shown EMFs to promote osteoblast-like cell proliferation, or contrarily, to induce differentiation and enhance mineralization. Typically these disparities have been attributed to methodological differences. The present paper argues the possibility that the chosen osteoblast model impacts stimulation outcome. Phenotypically immature cells, particularly at low seeding densities, appear to be prone to EMF-amplified proliferation. Conversely, mature cells at higher densities seem to be predisposed to earlier onset differentiation and mineralization. This suggests that EMFs augment ongoing processes in cell populations. To test this hypothesis, mature SaOS-2 cells and immature MC3T3-E1 cells at various densities, with or without osteo-induction, were exposed to sinusoidal 50 Hz EMF. The exposure stimulated the proliferation of MC3T3-E1 and inhibited the proliferation of SaOS-2 cells. Baseline alkaline phosphatase (ALP) expression of SaOS-2 cells was high and rapidly further increased with EMF exposure, whereas ALP effects in MC3T3-E1 cells were not seen until the second week. Thus both cell types responded differently to EMF stimulation, corroborating the hypothesis that the phenotypic maturity and culture stage of cells influence stimulation outcome.

摘要

几十年来,电磁场(EMF)疗法在促进骨生成方面的临床益处已得到认可,但关于其潜在机制的共识仍在探寻之中。研究表明,电磁场可促进成骨样细胞增殖,或者相反,诱导其分化并增强矿化作用。通常,这些差异归因于方法上的不同。本文提出一种可能性,即所选的成骨细胞模型会影响刺激结果。表型不成熟的细胞,尤其是在低接种密度下,似乎易于出现电磁场放大的增殖现象。相反,高密度的成熟细胞似乎更容易较早开始分化和矿化。这表明电磁场增强了细胞群体中正在进行的过程。为了验证这一假设,将不同密度的成熟SaOS-2细胞和未成熟MC3T3-E1细胞,在有或无骨诱导的情况下,暴露于50 Hz正弦电磁场中。该暴露刺激了MC3T3-E1细胞的增殖,并抑制了SaOS-2细胞的增殖。SaOS-2细胞的碱性磷酸酶(ALP)基线表达较高,且在电磁场暴露后迅速进一步升高,而MC3T3-E1细胞中的ALP效应直到第二周才显现。因此,两种细胞类型对电磁场刺激的反应不同,这证实了细胞的表型成熟度和培养阶段会影响刺激结果这一假设。

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