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Is Permeability Surface Area Product of [18F]Florbetaben Comparable to That of H2O?Kameyama, MasashiThe Journal of nuclear medicine (1978), 2024-06, Vol.65 (6), p.992-992 [Periódico revisado por pares]New York: Society of Nuclear MedicineTexto completo disponível |
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Constant rate of strain consolidation testing of soft clays and fibrous peatsMesri, Gholamreza ; Feng, Tao-WeiCanadian geotechnical journal, 2019-10, Vol.56 (10), p.1526 [Periódico revisado por pares]NRC Research PressTexto completo disponível |
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Permeability transition in human mitochondria persists in the absence of peripheral stalk subunits of ATP synthaseHe, Jiuya ; Carroll, Joe ; Ding, Shujing ; Fearnley, Ian M. ; Walker, John E.Proceedings of the National Academy of Sciences - PNAS, 2017-08, Vol.114 (34), p.9086-9091 [Periódico revisado por pares]United States: National Academy of SciencesTexto completo disponível |
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1,5‐Disubstituted‐1,2,3‐triazoles as inhibitors of the mitochondrial Ca2+‐activated F1FO‐ATP(hydrol)ase and the permeability transition poreAlgieri, Vincenzo ; Algieri, Cristina ; Maiuolo, Loredana ; De Nino, Antonio ; Pagliarani, Alessandra ; Tallarida, Matteo Antonio ; Trombetti, Fabiana ; Nesci, SalvatoreAnnals of the New York Academy of Sciences, 2021-02, Vol.1485 (1), p.43-55 [Periódico revisado por pares]New York: Wiley Subscription Services, IncTexto completo disponível |
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Persistence of the permeability transition pore in human mitochondria devoid of an assembled ATP synthaseCarroll, Joe ; He, Jiuya ; Ding, Shujing ; Fearnley, Ian M. ; Walker, John E.Proceedings of the National Academy of Sciences - PNAS, 2019-06, Vol.116 (26), p.12816-12821 [Periódico revisado por pares]United States: National Academy of SciencesTexto completo disponível |
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Permeability barriers of Gram‐negative pathogensZgurskaya, Helen I. ; Rybenkov, Valentin V.Annals of the New York Academy of Sciences, 2020-01, Vol.1459 (1), p.5-18 [Periódico revisado por pares]United States: Wiley Subscription Services, IncTexto completo disponível |
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The very low number of calcium-induced permeability transition pores in the single mitochondrionNeginskaya, Maria A ; Strubbe, Jasiel O ; Amodeo, Giuseppe F ; West, Benjamin A ; Yakar, Shoshana ; Bazil, Jason N ; Pavlov, Evgeny VThe Journal of general physiology, 2020-10, Vol.152 (10), p.1 [Periódico revisado por pares]United States: Rockefeller University PressTexto completo disponível |
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REPLY TO BERNARDI: The mitochondrial permeability transition pore and the ATP synthaseWalker, John E. ; Carroll, Joe ; He, JiuyaProceedings of the National Academy of Sciences - PNAS, 2020-02, Vol.117 (6), p.2745-2746 [Periódico revisado por pares]United States: National Academy of SciencesTexto completo disponível |
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Mitochondrial Ca2+ Transport: Mechanisms, Molecular Structures, and Role in CellsBelosludtsev, K. N. ; Dubinin, M. V. ; Belosludtseva, N. V. ; Mironova, G. D.Biochemistry (Moscow), 2019-06, Vol.84 (6), p.593-607 [Periódico revisado por pares]Moscow: Pleiades PublishingTexto completo disponível |
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The mitochondrial Na+/Ca2+ exchanger is essential for Ca2+ homeostasis and viabilityLuongo, Timothy S ; Lambert, Jonathan P ; Gross, Polina ; Nwokedi, Mary ; Lombardi, Alyssa A ; Shanmughapriya, Santhanam ; Carpenter, April C ; Kolmetzky, Devin ; Gao, Erhe ; van Berlo, Jop H ; Tsai, Emily J ; Molkentin, Jeffery D ; Chen, Xiongwen ; Madesh, Muniswamy ; Houser, Steven R ; Elrod, John WNature (London), 2017-05, Vol.545 (7652), p.93-97 [Periódico revisado por pares]London: Nature Publishing GroupTexto completo disponível |