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Journal Abstract Search


310 related items for PubMed ID: 12230877

  • 1. Membrane depolarization of isolated rat liver mitochondria attenuates permeability transition pore opening and oxidant production.
    Aronis A, Komarnitsky R, Shilo S, Tirosh O.
    Antioxid Redox Signal; 2002 Aug; 4(4):647-54. PubMed ID: 12230877
    [Abstract] [Full Text] [Related]

  • 2. Prooxidants open both the mitochondrial permeability transition pore and a low-conductance channel in the inner mitochondrial membrane.
    Kushnareva YE, Sokolove PM.
    Arch Biochem Biophys; 2000 Apr 15; 376(2):377-88. PubMed ID: 10775426
    [Abstract] [Full Text] [Related]

  • 3. The redox state of endogenous pyridine nucleotides can determine both the degree of mitochondrial oxidative stress and the solute selectivity of the permeability transition pore.
    Zago EB, Castilho RF, Vercesi AE.
    FEBS Lett; 2000 Jul 28; 478(1-2):29-33. PubMed ID: 10922464
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  • 4. Modulation of the mitochondrial cyclosporin A-sensitive permeability transition pore. II. The minimal requirements for pore induction underscore a key role for transmembrane electrical potential, matrix pH, and matrix Ca2+.
    Petronilli V, Cola C, Bernardi P.
    J Biol Chem; 1993 Jan 15; 268(2):1011-6. PubMed ID: 7678245
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  • 5. Opening of the mitochondrial permeability transition pore by uncoupling or inorganic phosphate in the presence of Ca2+ is dependent on mitochondrial-generated reactive oxygen species.
    Kowaltowski AJ, Castilho RF, Vercesi AE.
    FEBS Lett; 1996 Jan 08; 378(2):150-2. PubMed ID: 8549822
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  • 6. A mitochondrial signal peptide from Neurospora crassa increases the permeability of isolated rat liver mitochondria.
    Sokolove PM, Kinnally KW.
    Arch Biochem Biophys; 1996 Dec 01; 336(1):69-76. PubMed ID: 8951036
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  • 7. Ruthenium red-catalyzed degradation of peroxides can prevent mitochondrial oxidative damage induced by either tert-butyl hydroperoxide or inorganic phosphate.
    Meinicke AR, Bechara EJ, Vercesi AE.
    Arch Biochem Biophys; 1998 Jan 15; 349(2):275-80. PubMed ID: 9448715
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  • 8. Effects of the general anaesthetic Propofol on the Ca2(+)-induced permeabilization of rat liver mitochondria.
    Eriksson O.
    FEBS Lett; 1991 Feb 11; 279(1):45-8. PubMed ID: 1704857
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  • 13. The effects of singlet oxygen produced by photodynamic action on the mitochondrial permeability transition differ in accordance with the localization of the sensitizer.
    Moreno G, Poussin K, Ricchelli F, Salet C.
    Arch Biochem Biophys; 2001 Feb 15; 386(2):243-50. PubMed ID: 11368348
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  • 15. On the voltage dependence of the mitochondrial permeability transition pore. A critical appraisal.
    Scorrano L, Petronilli V, Bernardi P.
    J Biol Chem; 1997 May 09; 272(19):12295-9. PubMed ID: 9139672
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  • 16. The effect of permeability transition pore opening on reactive oxygen species production in rat brain mitochondria.
    Akopova OV, Kolchynskayia LY, Nosar' VY, Smyrnov AN, Malisheva MK, Man'kovskaia YN, Sahach VF.
    Ukr Biokhim Zh (1999); 2011 May 09; 83(6):46-55. PubMed ID: 22364018
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  • 17. Release of cytochrome c from liver mitochondria during permeability transition.
    Kantrow SP, Piantadosi CA.
    Biochem Biophys Res Commun; 1997 Mar 27; 232(3):669-71. PubMed ID: 9126333
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  • 19. The Ca²⁺-calmodulin-Ca²⁺/calmodulin-dependent protein kinase II signaling pathway is involved in oxidative stress-induced mitochondrial permeability transition and apoptosis in isolated rat hepatocytes.
    Toledo FD, Pérez LM, Basiglio CL, Ochoa JE, Sanchez Pozzi EJ, Roma MG.
    Arch Toxicol; 2014 Sep 27; 88(9):1695-709. PubMed ID: 24614978
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  • 20. Availability of the key metabolic substrates dictates the respiratory response of cancer cells to the mitochondrial uncoupling.
    Zhdanov AV, Waters AH, Golubeva AV, Dmitriev RI, Papkovsky DB.
    Biochim Biophys Acta; 2014 Jan 27; 1837(1):51-62. PubMed ID: 23891695
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