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Acta Haematologica|January 1, 1996
Prevention of anthracycline cardiotoxicity by iron chelationC Hershko, A Pinson, G LinkThe Journal of Laboratory and Clinical Medicine|September 1, 1987
Modification of iron uptake and lipid peroxidation by hypoxia, ascorbic acid, and alpha-tocopherol in iron-loaded rat myocardial cell culturesC Hershko, G Link, A PinsonThe Journal of Laboratory and Clinical Medicine|January 1, 1993
Iron loading of cultured cardiac myocytes modifies sarcolemmal structure and increases lysosomal fragilityG Link, A Pinson, C HershkoThe Journal of Laboratory and Clinical Medicine|August 1, 1985
Heart cells in culture: a model of myocardial iron overload and chelationG Link, A Pinson, C HershkoThe Journal of Laboratory and Clinical Medicine|September 1, 1989
Iron loading modifies the fatty acid composition of cultured rat myocardial cells and liposomal vesicles: effect of ascorbate and alpha-tocopherol on myocardial lipid peroxidationG Link, A Pinson, I Kahane, et al.The Journal of Laboratory and Clinical Medicine|March 1, 1996
Role of iron in the potentiation of anthracycline cardiotoxicity: identification of heart cell mitochondria as a major site of iron-anthracycline interactionG Link, R Tirosh, A Pinson, et al.Leukemia & Lymphoma|October 1, 1993
The role of iron and iron chelators in anthracycline cardiotoxicityC Hershko, G Link, M Tzahor, et al.The Journal of Laboratory and Clinical Medicine|January 1, 1989
Effect of iron loading on transmembrane potential, contraction, and automaticity of rat ventricular muscle cells in cultureG Link, P Athias, A Grynberg, et al.Pageof 47