203
Views
34
CrossRef citations to date
0
Altmetric
Original

In Vivo Effects of ELF MFs on Collagen Synthesis, Free Radical Processes, Natural Antioxidant System, Respiratory Burst System, Immune System Activities, and Electrolytes in the Skin, Plasma, Spleen, Lung, Kidney, and Brain Tissues

&
Pages 291-305 | Published online: 07 Jul 2009

References

  • Adey, W. R. (1992). ELF magnetic fields and promotion of cancer: experimental studies. In: Norden, B., Ramel, C., eds. Interaction Mechanisms of Low-Level Electromagnetic Fields in Living Systems. Great Britain: Oxford Science Publications, pp. 23–46.
  • Aykac, G., Uysal, M., Yalcin, A. S., Kocak-Toker, N., Sivas, A., Oz, H. (1985). The effect of chronic ethanol ingestion on hepatic lipid peroxide, glutathione, glutathione peroxidase and glutathione transferase in rats. Toxicology 36:71–76. [INFOTRIEVE], [CSA]
  • Balcavage, W. X., Alvager, T. , et al. (1996). A mechanism for action of extremely low frequency electromagnetic fields on biological systems. Biochem. Biophys. Res. Commun. 222:374–378. [INFOTRIEVE], [CSA], [CROSSREF]
  • Bhagavan, N. V. (1992). Medical Biochemistry. Boston: Jones and Bartlett Publishers.
  • Blackman, C. F., Benane, S. G., House, D. E. (1991). The influence of temperature during electric and magnetic field induced alteration of calcium-ion releasing from in vitro brain tissue. Bioelectromagnetics 12:173–182. [INFOTRIEVE], [CSA], [CROSSREF]
  • Blackman, C. F., Blanchard, J. P., Benane, S. G., House, D. E. (1996). Effect of AC and DC magnetic field orientation on nerve cells. Biochem. Biophys. Res. Commun. 220:807–811. [INFOTRIEVE], [CSA], [CROSSREF]
  • Canseven, A. G. (1992). Electrical properties of the skin. Gazi Med. J. 3:41–46. [CSA]
  • Canseven, A. G., Atalay Seyhan, N. (1995). Electric current-collagen synthesis interaction in wound healing I. Turkish Med. J. 2:71–77 ( Turkish). [CSA]
  • Canseven, A. G., Atalay Seyhan, N. (1996). Is it possible to trigger the collagen synthesis by electric current in skin wounds? Ind. J. Biochem. Biophys. 33:223–227. [CSA]
  • Canseven, A. G., Seyhan, N. (2000). Changes in skin hydroxyproline levels under the effect of magnetic fields. World Congress on Medical Physics and Biomedical Engineering. July 23–28, Navy Pier, Chicago (from CD/TU-B205-04).
  • Canseven, A. G., Seyhan, N. (2005a). Design, installation and standardization of homogenous magnetic field systems for experimental animals. In: Hozman, J., Kneppo, P., eds. IFMBE Proc. Vol. 11. Prague: IFMBE. 2005. ISSN 1727-1983 (Proceedings of the 3rd European Medical & Biological Engineering Conference – EMBEC'05. Prague, Czech Republic, 20–25.11.2005), pp. 2333–2338.
  • Canseven, A. G., Seyhan, N. (2005b). Effects of ambient ELF magnetic fields: variations in collagen synthesis of guinea pig' skin and scaling from animals to human. Gazi Med. J. 16:160–165 (Turkish). [CSA]
  • Canseven, A. G., Seyhan, N., Aydin, A., Isimer, A. (1999). Extremely low frequency electromagnetic field effect on brain tissue and blood plasma electrolytes. Med. Biol. Eng. Comput. 37 (Suppl. 2):1336–1337. [CSA]
  • Canseven, A. G., Ozel, U., Bilgihan, A., Seyhan, N. (2003a). Myeloperoxidase (MPO) activities in brain, lung, and renal tissues after exposure to magnetic fields of 50 Hz. 13th Balkan Biochemical Biophysical Days & Meeting on Metabolic Disorders. October 12–15, Kuşadast, Turkey, p. 94 (Abstract).
  • Canseven, A. G., Ozel, U., Bilgihan, A., Seyhan, N. (2003b). The effect of ELF magnetic field exposure on kidney myeloperoxidase (MPO) activity. 13th Balkan Biochemical Biophysical Days & Meeting on Metabolic Disorders. October 12–15, Kuşadast, Turkey, p. 96 (Abstract).
  • Canseven, A. G., Keskil, Z. A., Keskil, S., Seyhan, N. (2004). Magnetic field alters the pentylenetetrazol-induced seizures on neither pre-drug nor post-drug exposure. International Electromagnetic Field (EMF) Project, Workshop, Sensitivity of Children to Electromagnetic Fields. June 9–10, Istanbul, Turkey.
  • Canseven, A. G., Seyhan, N., Aydin, A., Cevik, C., Isimer, A. (2005a). Effects of ambient ELF magnetic fields: variations in electrolytes levels of brain and blood plasma. Gazi Med. J. 16:121–127. [CSA]
  • Canseven, A. G., Coskun, S., Seyhan, N. (2005b). ELF magnetic field' effects on lipid peroxidation in lung and kidney. In: Hozman, J., Kneppo, P., eds. IFMBE Proc. Vol. 11. Prague: IFMBE. 2005. ISSN 1727-1983 (Proceedings of the 3rd European Medical & Biological Engineering Conference – EMBEC'05. Prague, Czech Republic, 20–25.11.2005), pp. 4748–4752.
  • Canseven, A. G., Coskun, S., Seyhan, N. (2005c). Magnetic fields have an effect on antioxidant defense system in heart tissue. In: Hozman, J., Kneppo, P., eds. IFMBE Proc. Vol. 11. Prague: IFMBE. 2005. ISSN 1727-1983 (Proceedings of the 3rd European Medical & Biological Engineering Conference – EMBEC'05. Prague, Czech Republic, 20–25.11.2005), pp. 2226–2228.
  • Canseven, A. G., Ozel U., Bilgihan, A., Seyhan, N. (2005d). Effects of environmental ELF magnetic fields on myeloperoxidase (MPO) activity. In: Hozman, J., Kneppo, P., eds. IFMBE Proc. Vol. 11. Prague: IFMBE, 2005. ISSN 1927-1983 (Proceedings of the 3rd European Medical & Biological Engineering Conference – EMBEC'05. Prague, Czech Republic, 20–25.11.2005), pp. 2232–2236.
  • Canseven, A. G., Seyhan, N., Mirshahidi, S., Imir, T. (2006). Suppression of natural killer cell activity on Candida Stellatoidea by a 50 Hz magnetic field. Electromag. Bio. Med. 25:79–85. [CSA]
  • Cassini, A., Ferrali, M., Pompelam, A., Maellaro, A., Comborti, M. (1986). Lipid peroxidation and cellular damage in extrahepatic tissues of bromobenzene intoxicated mice. Am. J. Pathol. 123:520–531. [CSA]
  • Coskun, S., Seyhan, N., Canseven, A. G. (2006). Alterations induced in the lipid peroxidation levels of heart and liver tissues with ELF magnetic fields. In: Leitgeb, N., Cech, R., Schröttner, J., Schmied, P., eds. (Proceedings of the International Conference and COST 281 Workshop on Emerging EMF Technologies, Potential Sensitive Groups and Health. April 20–21, Graz, Austria).
  • Fiorani, M., Biagiarelli, B., Vetrano, F., Guidi, G., Dacha, M., Stocchi, V. (1997). In vitro effects of 50 Hz Magnetic fields on oxidatively damaged rabbit red blood cells. Bioelectromagnetics 18:125–131. [INFOTRIEVE], [CSA], [CROSSREF]
  • Garcia-Sancho, J., Montero, M., Alvarez, J., Fonteriz, R. I., Sanchez, A. (1994). Effects of extremely low frequency electromagnetic fields on ion transport in several mammalian cells. Bioelectromagnetics 15:579–588. [INFOTRIEVE], [CSA], [CROSSREF]
  • Glowick, S. P., Kaplan, S. D. (1955). Methods in Enzymology. New York: Academic Press, pp. 769–782.
  • Gold, S., Goodman, R., Henderson, A. S. (1994). Exposure of Simian virus-40-transformed human cells to magnetic fields results in increased levels of T-antigen mRNA and protein. Bioelectromagnetics 15:329–336. [INFOTRIEVE], [CSA], [CROSSREF]
  • Green, L. C., Wagner, D. A., Glogowski, J., Skipper, P. L., Wishnok, J. S., Tannenbaum, S. R. (1982). Analyses of nitrate, nitrite, and [15N] nitrate in biological fluids. Anal. Biochem. 126:131–138. [INFOTRIEVE], [CSA], [CROSSREF]
  • Gulay, Z., Imir, T. (1996). Anti-candidial activity of natural killer (NK) and lymphokine activated killer (LAK) lymphocytes in vitro. Immunobiol. 195:220–230. [CSA]
  • Guler, G., Atalay Seyhan, N. (1996). Changes in hydroxyproline levels in electric field tissue interaction. Ind. J. Biochem. Biophys. 33:531–533. [CSA]
  • Guler, G., Atalay Seyhan, N. (1999). Extremely low frequency (ELF) electric field with different application times inhibits protein synthesis. Med. Biol. Eng. Comput. 37 (Suppl. 2):1338–1339. [CSA]
  • Guler, G., Hardalac, F. (2005). Examination of electric field effects on oxidant and antioxidant enzymes by using hybrid genetic algorithm and neural network. IFMBE Proceedings. Vol. 11. Prague: IFMBE, 2005. Hozman, J., Kneppo, P., eds. (Proceedings of the 3rd European Medical & Biological Engineering Conference – EMBEC'05. Prague, Czech Republic, 20-25.11.2005), pp. 1220–1224.
  • Guler, G., Atalay Seyhan, N., Özoğul, C., Erdoğan, D. (1996). Biochemical and structural approach to collagen synthesis under electric fields. Gen. Physiol. Biophys. 15:429–440. [INFOTRIEVE], [CSA]
  • Guler, G., Seyhan, N., Arıcıoglu, A. (2004). Effects of electric fields on radical and antioxidant enzymes levels in spleen and testis of guinea pigs. Gazi Med. J. 2:99–104. [CSA]
  • Guler, G., Hardalac, F., Arıcıoglu, A. (2005). Examination of electric field effects on tissues by using back propagation neural network. J. Med. Syst. 29:679–708. [INFOTRIEVE], [CSA], [CROSSREF]
  • Guler, G., Seyhan, N., Arıcıoglu, A. (2006). Effects of static and 50 Hz alternating electric fields on superoxide dismutase activity and TBARS levels in guinea pigs. Gen. Physiol. Biophys. 25:177–193. [INFOTRIEVE], [CSA]
  • Harakawa, S., Inoue, N., Hori, T., Tochio, K., Kariya, T., Takahashi, K., Doge, F., Suzuki, H., Nagasawa, H. (2005). Effects of 50 Hz electric field on plasma lipid peroxide level and antioxidant activity in rats. Bioelectromagnetics 26:589–594. [INFOTRIEVE], [CSA], [CROSSREF]
  • IARC Monographs On the Evaluation of Carcinogenic Risks to Human. (2002). Non-Ionizing Radiation. Part 1: Static and Extremely Low Frequency (ELF) Electric and Magnetic Fields. Vol. 80. Lyon, France: IARC Press. (ISBN 92 832 1280 0).
  • Ilhan, A., Gurel, A., Armutcu, F., Kamisli, S., Iraz, M., Akyol, O., Ozen, S. (2004). Ginkgo biloba prevents mobile phone-induced oxidative stress in rat brain. Clin. Chim. Acta. 340:153–162. [INFOTRIEVE], [CSA], [CROSSREF]
  • Jelenkovic, A., Janac, B., Pesic, V., Jovanovic, D. M., Vasiljevic, I., Prolic, Z. (2006). Effects of extremely low-frequency magnetic field in the brain of rats. Brain Res. Bull. 68:355–360. [INFOTRIEVE], [CSA], [CROSSREF]
  • Jin, Y., Wang, H., Cheng, Y., Gu, H. (1998). Effects of static magnetic fields on free radical metabolism of human body. Wei Sheng Yan Jiu 27:97–99. [INFOTRIEVE], [CSA]
  • Kashkalda, D. A., Pashenko, E. A, Ziubanova, L. F. (1995). Effects of an impulse magnetic field on lipid peroxidation and the antioxidant system of the testes in animal experiments. Med. Tr. Prom. Ekol. 10:14–17. [INFOTRIEVE], [CSA]
  • Kenneth, J. M., Lee, R. C., Ehrlich, H. P. (1987). Frequency dependence of electric field modulation of fibroblasts protein synthesis. Science 236:1465–1469. [CSA], [CROSSREF]
  • Keskil, I. S., Aktuna Keskil, Z., Canseven, A. G., Seyhan, N. (2001). No effect of 50 Hz magnetic field observed in a pilot study on pentylenetetrazol-induced seizures and mortality in mice. Epilepsy Res. 44:27–32. [INFOTRIEVE], [CSA], [CROSSREF]
  • Kula, B., Sobczak, A., Kuska, R. (2000). Effects of static and ELF magnetic fields on free-radical processes in rat liver and kidney. Electro. Magnetobiol. 19:99–105. [CSA]
  • Kula, B., Sboczak, A., Kuska, R. (2002). Effects of electromagnetic field on free radical processes in steelworkers. Part I. Magnetic field influence on the antioxidant activity in red blood cells and plasma. J. Occup. Health 44:226–229. [CSA], [CROSSREF]
  • Liboff, A. R. (1997). Electric field ion cyclotron resonance. Bioelectromagnetics 18:85–87. [INFOTRIEVE], [CSA], [CROSSREF]
  • Liboff, A. R., Perkinson, W. C. (1991). Search for ion-cylotron resonance in an Na+ transport system. Bioelectromagnetics 12:77–83. [INFOTRIEVE], [CSA], [CROSSREF]
  • Liburdy, R. P., Yost, M. G. (1993). Time varying and static magnetic fields act in combination to alter calcium signal transduction in the lymphocyte. In: Blank, M., ed. Electricity and Magnetism in Biology and Medicine. San Francisco: San Francisco Press, Inc., pp. 331–334.
  • Lopez-Neblina, F., Toledo-Peyra, L. H., Mirmiran, R., Paez-Rollys, A. J. (1996). Time dependence of Na-Nitroprusside administration in the prevention of neutrophil infiltration in the rat ischemic kidney. Transplant 61:179–183. [CSA], [CROSSREF]
  • McLean, M., Engström, S., Holcomb, R. (2001). Magnetic field therapy for epilepsy. Epilepsy & behavior 2:S81–S87. [INFOTRIEVE], [CSA], [CROSSREF]
  • Montgomery, R., Conway, T. W., Spector, A. A., Chappell, D. (1996). Biochemistry: A Case Oriented Approach. St. Louis: Mosby-Year Book Inc.
  • Noda, Y., Mori, A., Liburdy, R. P., Packer, L. (2000). Pulsed magnetic fields enhance nitric oxide synthase activity in rat cerebellum. Pathophysiology 7:127–130. [INFOTRIEVE], [CSA], [CROSSREF]
  • Ozguner, F., Oktem, F., Ayata, A., Koyu, A., Yilmaz, H. R. (2005). A novel antioxidant agent caffeic acid phenethyl ester prevents long-term mobile phone exposure-induced renal impairment in rat. Prognostic value of malondialdehyde, N-acetyl-beta-D-glucosaminidase and nitric oxide determination. Mol. Cell. Biochem. 277:73–80. [INFOTRIEVE], [CSA], [CROSSREF]
  • Ozgur, E., Guler, G., Seyhan, N. (2006). Effects of electromagnetic field from power lines on the oxidant and antioxidant levels in guine pigs. International Conference and COST 281 Workshop on Emerging EMF Technologies, Potential Sensitive Groups, and Health. April 20–21, Graz, Austria.
  • Roy, S., Noda, Y., Eckert, V., Traber, M. G., Mori, A., Liburdy, R., Packer, L. (1995). The phorbol 12-myristate 13-acetate (PMA)-induced oxidative burst in rat peritoneal neutrophils is increased by a 0.1 mT (60 Hz) magnetic field. FEBS Lett. 376:164–166. [INFOTRIEVE], [CSA], [CROSSREF]
  • Seyhan, N., Canseven, A. G., Güler, G. (2006). Animal studies on the effects of ELF and static EMF. In: Ayrapetyan, S. N., Markov, M. S., eds. Bioelectromagnetics Current Concepts, The Mechanisms of the Biological Effect of Extremely High Power Pulses. NATO Security through Science Series B: Physics and Biophysics. Vol. 5. Netherlands: Springer. (ISBN 1-4020-4277-9) pp. 195–212.
  • Sobczak, A., Kula, B., Danch, A. (2002). Effects of electromagnetic field on free radical processes in steelworkers. Part II: Magnetic influence on vitamin A, E and Selenium concentrations in plasma. J. Occup. Health 44:230–233. [CSA], [CROSSREF]
  • Tofani, S., Barone, D., Cintorino, M., Margherita De santi, M., Ferrara, A., Orlassino, R., Ossole, P., Peroglio, F., Rolfo, K., Ronchetto, F. (2001). Static and ELF magnetic fields induce tumor growth inhibition and apoptosis. Bioelectromagnetics 22:419–428. [INFOTRIEVE], [CSA], [CROSSREF]
  • Tofani, S., Cintorino, M., Barone, D., Berardelli, M., Margherita De santi, M., Ferrara, A., Orlassino, R., Ossole, P., Rolfo, K., Ronchetto, F., Tripodi, S. S., Tosi, P. (2002). Increased mouse survival, tumor growth inhibition and decreased immunoreactive p53 after exposure to magnetic fields. Bioelectromagnetics 23:230–238. [INFOTRIEVE], [CSA], [CROSSREF]
  • Watanabe, Y., Nakagawa, M., Miyakoshi, Y. (1997). Enhancement of lipid peroxidation in the liver of mice exposed to magnetic fields. Ind. Health 35:285–290. [INFOTRIEVE], [CSA]
  • Woessner, J. F. (1961). The determination of hydroxyproline in tissue and protein samples containing small proportions of this iminoacid. Arch. Biochem. Biophys. 93:240–247. [CSA]

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.