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Author (up) Wang, T.; Nie, Y.; Zhao, S.; Han, Y.; Du, Y.; Hou, Y. url  doi
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  Title Involvement of midkine expression in the inhibitory effects of low-frequency magnetic fields on cancer cells Type Journal Article
  Year 2011 Publication Bioelectromagnetics Abbreviated Journal Bioelectromagnetics  
  Volume 32 Issue 6 Pages 443-452  
  Keywords Adenocarcinoma/metabolism/pathology/therapy/ultrastructure; Cell Cycle; Cell Line, Tumor; Cell Proliferation; Cytokines/genetics/metabolism; Flow Cytometry; Glycoproteins/genetics/metabolism; Humans; *Magnetic Field Therapy; S Phase; Sincalide/genetics/metabolism; Stomach Neoplasms/metabolism/pathology/therapy/ultrastructure  
  Abstract Effects of magnetic fields (MFs) on cancer cells may depend on cell type and exposure conditions. Gene expression levels are different among cancer cells. However, the effect of MFs on cancer cells with different gene expressions is still unclear. In this study, the cancer cell lines BGC-823, MKN-45, MKN-28, A549, SPC-A1, and LOVO were exposed to a low-frequency MF. Specific parameters of MFs were determined. Furthermore, the potential of the MF to influence cancer cell growth with midkine (MK) expression was evaluated. Cell proliferation and cell cycle were detected using the CCK-8 assay and flow cytometry. Cell ultrastructure was observed by transmission electron microscopy. BGC-823 cells with over-expression of MK (BGC-MK cells) and stanniocalcin-1 were generated by plasmid construction and transfection. Results showed that exposure to a 0.4-T, 7.5 Hz MF inhibited the proliferation of BGC-823, MKN-28, A549, and LOVO cells, but not MKN-45 and SPC-A1 cells. Moreover, the inhibitory effect of the MF on BGC-MK cells was lower (12.3%) than that of BGC-823 cells (20.3%). Analysis of the cell cycle showed that exposure to the MF led to a significant increase in the S phase in BGC-823 cells, but not in BGC-MK cells. In addition, organelle morphology was modified in BGC-823 cells exposed to the MF. These results suggest that exposure to a 0.4-T, 7.5 Hz MF could inhibit tumor cell proliferation and disturb the cell cycle. The alteration of MK expression in cancer cells may be related to the inhibitory effect of the MF on these cells.  
  Address Immunology and Reproduction Biology Lab, Medical School and State Key Laboratory of Pharmaceutical Biotechnology, Nanjing University, Nanjing, China  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language English Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 0197-8462 ISBN Medium  
  Area Expedition Conference  
  Notes PMID:21360556 Approved no  
  Call Number IT'IS @ evaj @ Serial 430  
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