[电场和电磁场对细胞分化的影响及其在骨科和创伤外科中的应用]。

M Hinsenkamp
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引用次数: 0

摘要

骨的动态电特性的发现是电磁场在骨科和创伤学中的治疗应用的起源。首次对骨不连、新骨折和骨交叉进行经证性治疗,观察到几种效果,虽然没有系统的临床应用,但鼓励了进一步的基础研究。本文对35年来的工作成果进行了总结。暴露于特定电磁场后,我们观察到DNA活性的改变和RNA的产生增加。内软骨骨化过程中,酸性GAGS的量增加较快,初级骨化点的骨化加快。新骨折时,愈伤组织刚度增加较快。最后,微阵列分析显示mRNA参与细胞分化和增殖的上调。负责BMP-2产生的mRNA显著增加,这解释了在建立键合组织实验模型后观察到的主要结果。所有观察结果都支持以牺牲细胞增殖为代价加速细胞分化。
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[Effects of electric and electromagnetic fields on cell differentiation and application in orthopedic and trauma surgery].

The discovery of the dynamic electrical properties of bone is at the origin of the therapeutical application of the electromagnetic fields in Orthopaedics and Traumatology. The first empirical treatment of non-union, fresh fractures and osteonecroses allowed the observation of several effects which, without justifying a systematic clinical application, encouraged further fundamental research. The results of this work realized during 35 years are summarized in the present article. After exposure to specific electromagnetic fields, we observed a modification of the DNA activity and an increased production of RNA. During enchondral ossification, the amount of acid GAGS increased faster and the ossification of the primary ossification point is accelerated. On fresh fractures, the rigidity of the callus increased faster. Finally, the microarrays analyses show an upregulation of mRNA involved in cellular differentiation and proliferation. The mRNA responsible of the production of BMP-2 is significantly increased, explaining the main results observed after the expense of experimental models of the bond tissues. All the observed results are in favour of an acceleration of the cellular differentiation at the expense of the proliferation.

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