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The Egyptian Journal of Hospital Medicine
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Tohamy, A., Awwad, M., El-Abiad, N., Elhadary, A. (2006). Molecular Biological Studies on the Effect of the Electromagnetic Fields on ETS-1 Oncogene. The Egyptian Journal of Hospital Medicine, 22(1), 155-168. doi: 10.21608/ejhm.2006.18040
Amany A. Tohamy; Mohammed H. Awwad; Nahed M. El-Abiad; Abdel-Monsef A. Elhadary. "Molecular Biological Studies on the Effect of the Electromagnetic Fields on ETS-1 Oncogene". The Egyptian Journal of Hospital Medicine, 22, 1, 2006, 155-168. doi: 10.21608/ejhm.2006.18040
Tohamy, A., Awwad, M., El-Abiad, N., Elhadary, A. (2006). 'Molecular Biological Studies on the Effect of the Electromagnetic Fields on ETS-1 Oncogene', The Egyptian Journal of Hospital Medicine, 22(1), pp. 155-168. doi: 10.21608/ejhm.2006.18040
Tohamy, A., Awwad, M., El-Abiad, N., Elhadary, A. Molecular Biological Studies on the Effect of the Electromagnetic Fields on ETS-1 Oncogene. The Egyptian Journal of Hospital Medicine, 2006; 22(1): 155-168. doi: 10.21608/ejhm.2006.18040

Molecular Biological Studies on the Effect of the Electromagnetic Fields on ETS-1 Oncogene

Article 14, Volume 22, Issue 1, January 2006, Page 155-168  XML PDF (675.68 K)
Document Type: Original Article
DOI: 10.21608/ejhm.2006.18040
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Authors
Amany A. Tohamy1; Mohammed H. Awwad2; Nahed M. El-Abiad3; Abdel-Monsef A. Elhadary3
1Department of Zoology, Faculty of Science, Helwan University, Egypt.
2Department of Zoology, Faculty of Science, Benha University, Egypt.
3Biological Application Department, Nuclear Research center, Atomic Energy Authority, Cairo, Egypt.
Abstract
ETS-1 is the founding member of the ETS family of transcription factors. ETS factors have important roles in oncogenesis, signal transduction and development. In human tumors, ETS-1 is expressed in endothelial cells and fibroblasts of the tumor stroma and is proposed to play a role in tumor vascularization and invasion by upregulating expression of matrix- degrading proteases. In human carcinomas, ETS-1 is also expressed by neoplastic cells, but little is known about the functional implications of this observation. The present study aimed to detect the tumor by using electromagnetic fields through ETS-1 oncogene. The detection of point mutations correlated with diseases is currently performed by digestion of PCR products (PCR/RFLP) by using restriction endonucleases. It has been described here a method based modified on primers during the PCR, and using some restriction endonucleases (AatI, BanI, BanII, DraI, DraIII, EaeI, PstI and SacII) which create a restriction fragment length polymorphism (RFLP) indicative of the studied mutation. The present study used the electromagnetic fields (4.5 Hz); PCR/RFLPs technique was selected as a biomarker to evaluate the effect of exposure to electromagnetic fields in implanted Ehrlich tumor of female BALB/C mice. Eighty mice were used and divided into four groups (20 each); normal, exposed (exposed to 4.5 Hz), infected (normal infected by Ehrlich tumor) and infected exposed (infected exposed to 4.5 Hz). DNA genome was extracted and ETS-1 oncogene detected (~4460 bp). AatI, BanII and EaeI restriction endonucleases did not differentiate between the PCR products (ETS-1 genes) of the four groups (normal, exposed, infected and infected exposed mice groups). DraIII, SacII, PstI, BanI and DraI differentiated between the four groups. The results proved that the electromagnetic fields could treat the tumor and PCR\RFLPs were able to be a useful diagnostic technique.

Keywords
Electromagnetic Field; Cancer; ETS-1 oncogene; PCR/RFLP
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