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联合磁场可使TE-85骨肉瘤细胞中的胰岛素样生长因子-II受体数量增加。

IGF-II receptor number is increased in TE-85 osteosarcoma cells by combined magnetic fields.

作者信息

Fitzsimmons R J, Ryaby J T, Magee F P, Baylink D J

机构信息

Department of Research, Jerry L. Pettis Memorial VA Hospital, Loma Linda, California, USA.

出版信息

J Bone Miner Res. 1995 May;10(5):812-9. doi: 10.1002/jbmr.5650100519.

DOI:10.1002/jbmr.5650100519
PMID:7639117
Abstract

Human osteosarcoma-derived osteoblast-like cells, TE-85, were used to assess the effect of a low frequency alternating magnetic field in combination with a controlled static magnetic field (combined magnetic fields, CMF) on insulin-like growth factor receptor regulation. In our culture system, application of a 15.3 Hz CMF induces a calculated maximum electrical potential in the culture media of 10(-5) V/m. Initial characterization of TE-85 cells demonstrated that (a) TE-85 cells contain both type I insulin-like growth factor (IGF-I) and IGF-II receptors and (b) dose dependence for IGF-stimulated cell proliferation were comparable to the affinities of the IGF's binding to membrane binding sites (i.e., receptors had dissociation constants in the low nanomolar concentration range). The studies with CMF exposure revealed that CMF treatment for 30 minutes increased the number of IGF-II receptors in a frequency-dependent manner without affecting the number of IGF-I receptors. The CMF-dependent increase in IGF-II receptor number was associated with a significant increase in the IGF-II dissociation constant. These results indicate that a membrane receptor levels can be altered by short-term exposure to low-energy, low-frequency electromagnetic fields and suggest a potential biochemical mechanism for electromagnetic effects on bone formation and remodeling.

摘要

人骨肉瘤来源的成骨样细胞TE-85被用于评估低频交变磁场与可控静磁场(组合磁场,CMF)联合作用对胰岛素样生长因子受体调节的影响。在我们的培养系统中,施加15.3 Hz的CMF会在培养基中诱导出计算得出的最大电势为10^(-5) V/m。TE-85细胞的初步特征表明:(a)TE-85细胞同时含有I型胰岛素样生长因子(IGF-I)和IGF-II受体;(b)IGF刺激细胞增殖的剂量依赖性与IGF与膜结合位点(即受体的解离常数在低纳摩尔浓度范围内)结合的亲和力相当。CMF暴露研究表明,CMF处理30分钟会以频率依赖的方式增加IGF-II受体的数量,而不影响IGF-I受体的数量。CMF依赖性IGF-II受体数量的增加与IGF-II解离常数的显著增加有关。这些结果表明,短期暴露于低能量、低频电磁场可改变膜受体水平,并提示了电磁场对骨形成和重塑影响的潜在生化机制。

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