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Original Article

The Increase of Membrane Capacitance as a Consequence of Radiation-induced Lipid Peroxidation

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Pages 71-83 | Received 06 Oct 1989, Accepted 22 Jun 1990, Published online: 03 Jul 2009

References

  • Barber D.J.W., Thomas J.K. Reactions of radicals with lecithin bilayers. Radiation Research 1978; 74: 51–65
  • Barclay L.R.C., Baskin K.A., Kong D., Locke S.J. Autoxidation of model membranes. The kinetics and mechanism of autoxidation of mixed phospholipid bilayers. Canadian Journal of Chemistry 1987; 65: 2541–2551
  • Benz R., Fröhlich O., Läuger P., Montal M. Electrical capacity of black lipid films and of lipid bilayers made from monolayers. Biochimica et Biophysica Acta 1975; 394: 323–334
  • Bruch R.C., Thayer W.S. Differential effect of lipid peroxidation on membrane fluidity as determined by electron spin resonance probes. Biochimica et Biophysica Acta 1983; 733: 216–222
  • Coster H.G.L., Smith J.R. The molecular organisation of bimolecular lipid membranes. A study of the low frequency Maxwell-Wagner impedance dispersion. Biochimica et Biophysica Acta 1974; 373: 151–164
  • Dilger J.P., Fisher L.R., Haydon D.A. A critical comparison of electrical and optical methods for bilayer thickness determination. Chemistry and Physics of Lipids 1982; 30: 159–176
  • Fettiplace R., Gordon L.G.M., Hladky S.B., Requena J., Zingsheim H.P., Haydon D.A. Techniques in the formation and examination of ‘black’ lipid bilayer membranes. Methods in Membrane Biology, E.D. Korn. Plenum, New York 1975; 1–75
  • Gebicki J.M., Allen A.O. Relationship between critical micelle concentration and rate of radiolysis of aqueous sodium linoleate. Journal of Physical Chemistry 1969; 73: 2443–2445
  • Gebicki J.M., Bielski B.H. Comparison of the capacities of the perhydroxyl and the superoxide radicals to initiate chain oxidation of linoleic acid. Journal of the American Chemical Society 1981; 103: 7020–7022
  • Gutknecht J., Bruner L.J., Tosteson D.C. The permeability of thin lipid membranes to bromide and bromine. Journal of General Physiology 1972; 59: 486–502
  • Hasegawa K., Neta P. Rate constants and mechanisms of reaction of Cl-2 radicals. Journal of Physical Chemistry 1978; 82: 854–857
  • Jayson G.G., Parsons B.J., Swallow A.J. Some simple, highly reactive, inorganic chlorine derivatives in aqueous solutions. Journal of the Chemical Society, Faraday Transactions I 1973; 69: 1597–1607
  • Kappus H. Lipid peroxidation: mechanism, analysis, enzymology and biological relevance. Oxidative Stress, H. Sies. Academic Press, London 1985; 273–311
  • Khorana S., Hamill W.H. Electronic processes in the pulse radiolysis of aqueous solutions of halide ions. Journal of Physical Chemistry 1971; 75: 3081–3088
  • Klausmann E., Fahrner W.R., Bräunig D. The electronic states of the Si-SiO2 interface. Instabilities in Silicon Devices, G. Barbottin, A. Vapaille. Elsevier, Amsterdam 1989; 249–285
  • Kuhn M. A quasi-static technique for MOS C-V and surface state measurements. Solid State Electronics 1970; 13: 873–885
  • Läuger P. Mechanisms of biological ion transport-carriers, channels, and pumps in artificial lipid membranes. Angewandte Chemie 1985; 24: 905–923, International edition in English
  • Läuger P., Lesslauer W., Marti E., Richter J. Electrical properties of bimolecular phospholipid membranes. Biochimica et Biophysica Acta 1967; 135: 20–32
  • Läuger P., Benz R., Stark G., Bamberg E., Jordan P.C., Fahr A., Brock W. Relaxation studies of ion transport systems in lipid bilayer membranes. Quarterly Reviews of Biophysics 1981; 14: 513–598
  • Lindau M., Neher E. Patch-clamp techniques for time-resolved capacitance measurements in single cells. Pflügers Archiv 1988; 411: 137–146
  • Metwally M.M., Moore J.S. Oxygen uptake during the γ-irradiation of fatty acids. International Journal of Radiation Biology 1987; 52: 253–267
  • Neher E., Marty A. Discrete changes of cell membrane capacitances observed under conditions of enhanced secretion in bovine adrenal chromaffin cells. Proceedings of the National Academy of Sciences (USA) 1982; 79: 6712–6716
  • Petkau A., Chelack W.S. Radioprotective effect of superoxide dismutase on model phospholipid membranes. Biochimica et Biophysica Acta 1976; 433: 455–456
  • Raleigh J.A., Kremers W., Gaboury B. Dose-rate and oxygen effects in models of lipid membranes: linoleic acid. International Journal of Radiation Biology 1977; 31: 203–213
  • Sargent D.F. Voltage jump/capacitance relaxation studies of bilayer structure and dynamics. Journal of Membrane Biology 1975; 23: 227–247
  • Stark G., Gisin B. Kinetics of ion transport in lipid membranes induced by lysine-valinomycin and derivatives. Biophysics of Structure and Mechanism 1979; 6: 39–56
  • Stark G., Strässle M., Wilhelm M. Pulse radiolysis at planar lipid membranes doped with ion carriers and pore formers. Biochimica et Biophysica Acta 1984; 775: 265–268
  • Strässle M., Stark G., Wilhelm M. Effects of ionizing radiation on artificial (planar) lipid membranes. I. Radiation inactivation of the ion channel gramicidin A. International Journal of Radiation Biology 1987a; 51: 265–286
  • Strässle M., Stark G., Wilhelm M. Effects of ionizing radiation on artificial (planar) lipid membranes. II. The ion carriers valinomycin and nonactin as probes for radiation induced structural changes of the membrane. International Journal of Radiation Biology 1987b; 51: 287–302
  • Strässle M., Stark G., Wilhelm M., Daumas P., Heitz F., Lazaro R. Radiolysis and photolysis of ion channels formed by analogues of gramicidin A with a varying number of tryptophan residues. Biochimica et Biophysica Acta 1989; 980: 305–314
  • Szabo G., Eisenman G., Laprade R., Ciani S.M., Krasne S. Experimentally observed effects of carriers on the electrical properties of bilayer membranes-equilibrium domain. Membranes, G. Eisenman. Marcel Dekker, New York 1973; 2: 179–328
  • White S.H. A study of lipid bilayer membrane stability using precise measurements of specific capacitance. Biophysical Journal 1970; 10: 1127–1147
  • White S.H., Blessum D.N. High precision capacitance bridge for studying lipid bilayer membranes. Review of Scientific Instruments 1975; 46: 1462–1466

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