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The Journal of Biological Chemistry|September 26, 1997
Reconstituted plant uncoupling mitochondrial protein allows for proton translocation via fatty acid cycling mechanismP Jezek, A D Costa, A E VercesiFEBS Letters|August 3, 2000
The redox state of endogenous pyridine nucleotides can determine both the degree of mitochondrial oxidative stress and the solute selectivity of the permeability transition poreE B Zago, R F Castilho, A E VercesiJournal of Bioenergetics and Biomembranes|December 1, 1996
The irreversibility of inner mitochondrial membrane permeabilization by Ca2+ plus prooxidants is determined by the extent of membrane protein thiol cross-linkingR F Castilho, A J Kowaltowski, A E VercesiThe Journal of Biological Chemistry|May 28, 1998
The thiol-specific antioxidant enzyme prevents mitochondrial permeability transition. Evidence for the participation of reactive oxygen species in this mechanismA J Kowaltowski, L E Netto, A E VercesiArchives of Biochemistry and Biophysics|February 4, 1998
Ruthenium red-catalyzed degradation of peroxides can prevent mitochondrial oxidative damage induced by either tert-butyl hydroperoxide or inorganic phosphateA R Meinicke, E J Bechara, A E VercesiAnais Da Academia Brasileira De Ciencias|December 1, 1981
Synergistic effect of chlorpromazine and alkanals on the human red blood cellsY Makita, A E Vercesi, M Haun, et al.The American Journal of Physiology|July 1, 1995
Ca(2+)-induced mitochondrial membrane permeabilization: role of coenzyme Q redox stateA J Kowaltowski, R F Castilho, A E VercesiBiochemical Pharmacology|November 3, 1992
Protective effect of trifluoperazine on the mitochondrial damage induced by Ca2+ plus prooxidantsR S Pereira, A P Bertocchi, A E VercesiFEBS Letters|April 27, 2001
Mitochondrial permeability transition and oxidative stressA J Kowaltowski, R F Castilho, A E VercesiJournal of Neurochemistry|December 26, 2001
Oxidative stress in Ca(2+)-induced membrane permeability transition in brain mitochondriaE N Maciel, A E Vercesi, R F CastilhoPageof 13