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Observations of cellular responses to diamagnetic forces acting on cell components

机译:观察细胞对反磁性力作用于细胞成分的反应

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摘要

The magnetooptical measurements of the properties of living cells have a potentially large impact on cellular engineering and biotechnology because the noninvasive approach to applying magnetic fields on cells enables the detection of the dynamics of intracellular components under natural conditions. In this study, we examine a magnetooptical response in smooth muscle cells exposed to a vertical magnetic field of 5 T. The time course of the linearly polarized light transmittance of cells showed both a gradual decrease and fluctuations during exposure at 5 T. Real-time observations of smooth muscle cells and giant rodlike vesicles revealed that magnetic fields cause morphological changes in the cells and vesicles. In addition, results of the optical transmittance measurement of a fish scale indicate that cellular or tissue components are diamagnetically reoriented by magnetic fields.
机译:磁光法对活细胞特性的测量可能会对细胞工程和生物技术产生巨大影响,因为在细胞上施加磁场的非侵入性方法能够检测自然条件下细胞内组分的动力学。在这项研究中,我们检查了暴露于5 T垂直磁场的平滑肌细胞的磁光反应。细胞的线性偏振光透射率的时程在5 T暴露期间显示出逐渐减小和波动的情况。平滑肌细胞和巨大的棒状囊泡的观察表明,磁场引起细胞和囊泡的形态变化。另外,鱼鳞的透光率测量结果表明,细胞或组织成分被磁场反磁性地重新定向。

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