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The Journal of Membrane Biology|October 1, 1994
Reconstitution of the influenza virus M2 ion channel in lipid bilayersM T Tosteson, L H Pinto, L J Holsinger, et al.The New England Journal of Medicine|April 3, 1980
Increased sodium-lithium countertransport in red cells of patients with essential hypertensionM Canessa, N Adragna, H S Solomon, et al.Hypertension (Dallas, Tex. : 1979)|November 1, 1982
Red cell lithium-sodium countertransport and sodium-potassium cotransport in patients with essential hypertensionN C Adragna, M L Canessa, H Solomon, et al.The Journal of Clinical Investigation|July 1, 1987
Properties of the Na+-K+ pump in human red cells with increased number of pump sitesJ A Halperin, C Brugnara, A S Kopin, et al.The Journal of General Physiology|April 1, 1981
Ion transport mediated by the valinomycin analogue cyclo(L-Lac-L-Val-D-Pro-D-Val)3 in lipid bilayer membranesR Latorre, J J Donovan, W Koroshetz, et al.Biochimica Et Biophysica Acta|December 14, 1976
Mechanism of ion transport through lipid bilayer-membranes mediated by peptide cyclo-(D-Val-L-Pro-L-Val-D-Pro)R Benz, B F Gisin, H P Ting-Beall, et al.Biochimica Et Biophysica Acta|May 18, 1978
Selective ion binding and membrane activity of synthetic cyclopeptidesB F Gisin, H P Ting-Beall, D G Davis, et al.The American Journal of Psychiatry|September 1, 1978
A heritable disorder of lithium transport in erythrocytes of a subpopulation of manic-depressive patientsD G Ostrow, G N Pandey, J M Davis, et al.Molecular Medicine (Cambridge, Mass.)|November 1, 1996
The transient pore formed by homologous terminal complement complexes functions as a bidirectional route for the transport of autocrine and paracrine signals across human cell membranesJ A Acosta, L R Benzaquen, D J Goldstein, et al.The Journal of General Physiology|August 1, 1978
Lithium transport pathways in human red blood cellsG N Pandey, B Sarkadi, M Haas, et al.Pageof 8