Browse > Article
http://dx.doi.org/10.7742/jksr.2013.7.1.085

Selective transport characteristics of alkali metal ions through a cell membrane model which irradiated by γ-ray  

Ko, Inho (Dept. of Radiological Technology, Cheju Halla University)
Yeo, Jindong (Dept. of Radiological Technology, Sorabol University)
Publication Information
Journal of the Korean Society of Radiology / v.7, no.1, 2013 , pp. 85-91 More about this Journal
Abstract
The selective transport characteristics of $K^+$ and $Na^+$ of cell membrane model which irradiated by 60Co ${\gamma}$-ray was investigated. The cell membrane model used in this experiment was a Na+ type sulfonated copolymerized membrane of styrene and divinylbenezene. The initial flux of the ion was increased with increase of both $H^+$ ion concentration. In this experiment range(pH 0.5-3, temperature $15-65^{\circ}C$), first, the selectivity of $K^+$ and the ratio K+/Na+ of membrane which was not irradiated was about 1.06 - 1.13 and second, that of K+ and the ratio $K^+/Na^+$ of membrane which was irradiated was near about 0. And the driving force of pH of irradiated membrane was significantly increased about 4-5 times than membrane which was not irradiated. As selective transport of K+ and Na+ of cell membrane model were abnormal, cell damages were appeared at cell.
Keywords
${\gamma}$-ray; $Na^+$ polystyrene-divinylbenzene sulfonated copolymerized membrane; Selective transport characteristics;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Swdlack, B. and Kahovec, J, "Synthetic polymeric membrane"walter de Grvyter, Berlin, New York, 1987.
2 Hwang, S. T. "Membrane in separation", John and Sons, Inc New York., 1982.
3 West, I. C.. Biochem, Biophys , Acta. Vol. 64, No. 4, pp. 91-126., 1980.
4 M. Yoshikawa, S. Shudo, K. Sanui and N. Ogata, Active tansport of organic acid rough poly of Membrane Sci, pp.26, 1986.
5 Meares, P, " Membrane seperation process," Elssvier, New York, 1976.
6 Scott, J. " Membrane and Ultra filtration Technology Recent Advance, " Noyes Data Corp. N. J., 1980.
7 Marr, R. and A, Kopp, " Liquid membrane technology a survey of phenomena, mechanism, and model," Inter Chem. Eng, pp.22-44., 1982.
8 Kesting, R. E, " Synthetic polymeric membrane, " John Wiley and Son New York., 1985.
9 D. M. Koenhen . " J. of polymer Science", Vol. 34, No. 2, pp. 2079, 1987.
10 Rosen, B. P.(ed) Bacterial transport. Dekker, N. Y. 1978.
11 Glynn, Y. M. and Hokin, L. E. Ann. Rev Biochem. Vol. 43, No. 1, pp. 27-356., 1974.
12 Ullrich, K. J.. Ann. Rev. Physiol. Vol. 41, No. 4, pp. 181-195., 1979.   DOI   ScienceOn
13 Helfferich, F, Ion exchange, Mc Graw-Hill, New York., 1962.
14 Shimidzu, T. N. Yoshikawa, M. Hseg awa, and K. Kasakatus, " Active transport and selectivity transport of akali metal ion through poly(3-vinyl-1, 4-butyrolaction-co-acrylonitrile) membrane," macromolecules, Vol. 14, No. 1, pp.170, 1981.   DOI
15 Uragami, T., S. Watanabe, R. Nakamura, F. Yoshida, and M. Sugihara, " study on syntheses and Fermeabilities of polymer Membrane." J, Appl. polym, Sci., Vol.28, No. 2, pp.1613. 1981.
16 Yoshikawa, M., Shudo, S., Sanui, K., and Ogata, N, JI. Membrane SCI, pp.26. 1986.