电磁场射频波对微管蛋白的影响。

Mousavi Taghi, Riazi Gholamhosein, Rezayi-Zarchi Saeed
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引用次数: 8

摘要

微管是由微管蛋白异二聚体组成的大分子结构,几乎存在于每一个真核细胞中。mt满足产生电磁场的所有条件,并且由于微管蛋白异源二聚体的电极性而具有电极性。计算出的静电偶极矩约为1000德拜,使它们能够平行于外加电磁场方向排列。本研究从大鼠脑中提取并纯化了微管蛋白异源二聚体。通过体外聚合得到MTs。微管样品在900赫兹射频电磁场的存在和不存在下均被吸附。我们的研究结果证明了频率为900 Hz的电磁场对mt结构的影响。在本文中,使用了一项相关专利,这将有助于更好地理解所研究的主题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of radio frequency waves of electromagnetic field on the tubulin.

Microtubules (MTs) are macromolecular structures consisting of tubulin heterodimers and present in almost every eukaryotic cell. MTs fulfill all conditions for generation of electromagnetic field and are electrically polar due to the electrical polarity of a tubulin heterodimer. The calculated static electric dipole moment of about 1000 Debye makes them capable of being aligned parallel to the applied electromagnetic field direction. In the present study, the tubulin heterodimers were extracted and purified from the rat brains. MTs were obtained by polymerization in vitro. Samples of microtubules were adsorbed in the absence and in the presence of electromagnetic fields with radio frequency of 900 Hz. Our results demonstrate the effect of electromagnetic field with 900 Hz frequency to change the structure of MTs. In this paper, a related patent was used that will help to better understand the studied subject.

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