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Magnetic shielding accelerates the proliferation of human neuroblastoma cell by promoting G1-phase progression.


ABSTRACT: Organisms have been exposed to the geomagnetic field (GMF) throughout evolutionary history. Exposure to the hypomagnetic field (HMF) by deep magnetic shielding has recently been suggested to have a negative effect on the structure and function of the central nervous system, particularly during early development. Although changes in cell growth and differentiation have been observed in the HMF, the effects of the HMF on cell cycle progression still remain unclear. Here we show that continuous HMF exposure significantly increases the proliferation of human neuroblastoma (SH-SY5Y) cells. The acceleration of proliferation results from a forward shift of the cell cycle in G1-phase. The G2/M-phase progression is not affected in the HMF. Our data is the first to demonstrate that the HMF can stimulate the proliferation of SH-SY5Y cells by promoting cell cycle progression in the G1-phase. This provides a novel way to study the mechanism of cells in response to changes of environmental magnetic field including the GMF.

SUBMITTER: Mo WC 

PROVIDER: S-EPMC3552807 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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Magnetic shielding accelerates the proliferation of human neuroblastoma cell by promoting G1-phase progression.

Mo Wei-chuan WC   Zhang Zi-jian ZJ   Liu Ying Y   Bartlett Perry F PF   He Rong-qiao RQ  

PloS one 20130123 1


Organisms have been exposed to the geomagnetic field (GMF) throughout evolutionary history. Exposure to the hypomagnetic field (HMF) by deep magnetic shielding has recently been suggested to have a negative effect on the structure and function of the central nervous system, particularly during early development. Although changes in cell growth and differentiation have been observed in the HMF, the effects of the HMF on cell cycle progression still remain unclear. Here we show that continuous HMF  ...[more]

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