Electrical breakdown of erythrocyte membranes during UV-radiation
Gavelia, N.V.; Puchkova, T.V.; Parnev, O.M.; Vladimirov, I.A.
Biofizika 28(5): 882-883
1983
ISSN/ISBN: 0006-3029 PMID: 6639973 Document Number: 201491
The electric stability of erythrocyte membrane was shown to reduce under UV-radiation. The disturbing action of UV-radiation depends on the value of membrane potential difference.
Document emailed within 1 workday
Related Documents
Putvinskiĭ, A.V.; Popov, S.A.; Puchkova, T.V.; Danilov, I.A.; Vladimirov, I.A. 1983: Electrical breakdown of erythrocyte membranes attributed to the diffusion potential difference Biofizika 28(3): 505-506Smirnov, A.A.; Putvinskiĭ, A.V.; Roshchupkin, D.I.; Vladimirov, I.A. 1981: Irreversible damage of lipid bilayer membranes in a state of electrical breakdown Biofizika 26(1): 140-142
Mikhaĭlov, V.F.; Tarakanova, M.P. 1980: Damage to erythrocyte membranes on exposure to ionizing radiation Biulleten' Eksperimental'noi Biologii i Meditsiny 90(9): 375-377
Zeng, C.; Tang, L. 2010: A new progress of cancer therapy: irreversible electrical breakdown of pulse therapy Sheng Wu Yi Xue Gong Cheng Xue Za Zhi 27(2): 440-443
Milner, Y.; Hermoni, R. 1975: Phosphorylation of human erythrocyte membranes Israel Journal of Medical Sciences 11(11): 1186-1187
Tavasolian, B.; Hardcastle, J.E.; Hines, J.F. 1977: Some electrical properties of cerebroside and lecithin bilayer membranes Physiological Chemistry and Physics 9(2): 149-154
Rakhimdzhanov, A.R.; Shamsiev, E.S. 1989: Characteristics of the erythrocyte membranes in normal subjects Laboratornoe Delo 8: 22-24
Sharma, I.N.; Gupta, G.S.; Dubey, D.P. 1978: Calci-m-45 binding with erythrocyte membranes during dyserythropoiesis Indian Journal of Biochemistry and Biophysics 15(2): 143-145
Bel'chenko, D.I.; Khanina, N.Ia. 1988: Changes in the cholesterol content of the erythrocyte membranes in alcoholism Patologicheskaia Fiziologiia i Eksperimental'naia Terapiia 1988(5): 20-23
Gercken, G.; Witt, W. 1977: Transphosphatidylation reaction with phospholipase D in erythrocyte membranes Acta Biologica et Medica Germanica 36(5-6): 837-842
Matsynin, V.V. 1975: Hyperoxia and the chemical resistance of erythrocyte membranes Fiziolohichnyi Zhurnal 21(1): 110-114
Heath, B.P.; Wyatt, J.L.; Mohandas, N.; Shohet, S.B. 1981: A new method for studying the deformability of isolated erythrocyte membranes Progress in Clinical and Biological Research 56: 195-203
Schrier, S.L. 1970: Transfer of inorganic phosphate across human erythrocyte membranes Journal of Laboratory and Clinical Medicine 75(3): 422-434
Apukhovskaia, L.I.; Vendt, V.P.; Ivashkevich, S.P.; Tsiomik, V.A. 1976: Sterol content of rabbit erythrocyte membranes normally and in atherosclerosis Ukrains'kyi Biokhimichnyi Zhurnal 48(5): 592-596
Torkhovskaia, T.I.; Artemova, L.G.; Khodzhakuliev, B.G.; Rudenko, T.S.; Polesskiĭ, V.A. 1980: Structural and functional changes in erythrocyte membranes in experimental atherosclerosis Biulleten' Eksperimental'noi Biologii i Meditsiny 89(6): 675-678
Rybczyńska, M.; Chmiel, J.; Philips, H. 1984: Effects of nitroheterocyclic sensitizers on erythrocyte membranes ATP-ase activity Polish Journal of Pharmacology and Pharmacy 36(4): 307-312
Karaseva, T.L.; Iavorskiĭ, A.S.; Pavlovskiĭ, V.I.; Tsapenko, Z.N. 1993: Transport of 2,5-dimethoxy-4-methylamphetamine by macroheterocycles across erythrocyte membranes Ukrainskii Biokhimicheskii Zhurnal 65(5): 95-98
Elferink, J.G.; Booij, H.L. 1975: The action of some triphenylmethane dyes on yeast and erythrocyte membranes Arzneimittel-Forschung 25(8): 1248-1252
Földes-Papp, Z.; Maretzki, D. 1982: Glutathione peroxidase activity of human erythrocyte membranes Acta Biologica et Medica Germanica 41(11): 1003-1008
Noskov, S.M.; Potapov, P.P.; Shirokova, L.Iu.; Belorukov, E.V. 1988: Lipid composition of the erythrocyte membranes in rheumatoid arthritis Laboratornoe delo 1988(5): 73-74