In vivo quantitative mapping of human mitochondrial cardiac membrane potential: a feasibility study
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N. Alpert | Y. Petibon | G. El Fakhri | N. Guehl | M. Normandin | Daniel L. Yokell | M. Pelletier-Galarneau | P. Han | Chao Ma | F. Detmer | S. J. W. Kim | D. Yokell | S. J. Kim
[1] Ryan G. Short. In Vivo Imaging of Mitochondrial Membrane Potential in Non-Small Cell Lung Cancer. , 2020, Radiology. Imaging cancer.
[2] R. Gunn,et al. Imaging of Chemotherapy-Induced Acute Cardiotoxicity with 18F-Labeled Lipophilic Cations , 2019, The Journal of Nuclear Medicine.
[3] N. Alpert,et al. Quantitative in vivo mapping of myocardial mitochondrial membrane potential , 2018, PloS one.
[4] G. Hermosillo,et al. Whole-Body PET/MR Imaging: Quantitative Evaluation of a Novel Model-Based MR Attenuation Correction Method Including Bone , 2015, The Journal of Nuclear Medicine.
[5] S. Dudley,et al. Mitochondria and arrhythmias , 2013, Expert review of cardiovascular therapy.
[6] C. Chinopoulos,et al. Quantitative measurement of mitochondrial membrane potential in cultured cells: calcium‐induced de‐ and hyperpolarization of neuronal mitochondria , 2012, The Journal of physiology.
[7] S. Weise,et al. 4-[18F]-tetraphenylphosphonium as a PET tracer for myocardial mitochondrial membrane potential. , 2012, JACC. Cardiovascular imaging.
[8] L. Blatter,et al. Measuring mitochondrial function in intact cardiac myocytes. , 2012, Journal of molecular and cellular cardiology.
[9] Paolo Bernardi,et al. Mitochondrial permeability transition in Ca(2+)-dependent apoptosis and necrosis. , 2011, Cell calcium.
[10] A. Makino,et al. Regulation of mitochondrial morphology and function by O-GlcNAcylation in neonatal cardiac myocytes. , 2011, American journal of physiology. Regulatory, integrative and comparative physiology.
[11] Joseph A. Hill,et al. Pathogenesis of myocardial ischemia-reperfusion injury and rationale for therapy. , 2010, The American journal of cardiology.
[12] David C. Young,et al. Impairment of ultrastructure and cytoskeleton during progression of cardiac hypertrophy to heart failure , 2010, Laboratory Investigation.
[13] Xu Wu,et al. The Mitochondrial Pathway of Anesthetic Isoflurane-induced Apoptosis* , 2009, The Journal of Biological Chemistry.
[14] S. Weise,et al. A phase I study evaluating dosimetry and myocardial pharmacokinetic behavior of BFPET, a new F-18 labeled tracer for myocardial perfusion imaging , 2009 .
[15] M. Hüttemann,et al. Regulation of oxidative phosphorylation, the mitochondrial membrane potential, and their role in human disease , 2008, Journal of bioenergetics and biomembranes.
[16] Y. Yoon,et al. Mitochondrial fission mediates high glucose-induced cell death through elevated production of reactive oxygen species. , 2008, Cardiovascular research.
[17] S. Sheu,et al. Mechanisms of reduced mitochondrial Ca2+ accumulation in failing hamster heart , 2007, Pflügers Archiv - European Journal of Physiology.
[18] S. Cortassa,et al. Mitochondrial ion channels: gatekeepers of life and death. , 2005, Physiology.
[19] C. Borner,et al. Volatile Anesthetics Induce Caspase-dependent, Mitochondria-mediated Apoptosis in Human T Lymphocytes In Vitro , 2005, Anesthesiology.
[20] N. Kamo,et al. Membrane potential of mitochondria measured with an electrode sensitive to tetraphenyl phosphonium and relationship between proton electrochemical potential and phosphorylation potential in steady state , 1979, The Journal of Membrane Biology.
[21] H. Rottenberg. Membrane potential and surface potential in mitochondria: Uptake and binding of lipophilic cations , 2005, The Journal of Membrane Biology.
[22] David M Higgins,et al. Modified Look‐Locker inversion recovery (MOLLI) for high‐resolution T1 mapping of the heart , 2004, Magnetic resonance in medicine.
[23] C. Crouzel,et al. Use of 11C-triphenylmethylphosphonium for the evaluation of membrane potential in the heart by positron-emission tomography , 2004, European Journal of Nuclear Medicine.
[24] Jake Jacobson,et al. Imaging mitochondrial function in intact cells. , 2003, Methods in enzymology.
[25] M. Brand,et al. Internal regulation of ATP turnover, glycolysis and oxidative phosphorylation in rat hepatocytes. , 1999, European journal of biochemistry.
[26] G. Salama,et al. Effects of cardiac work on electrical potential gradient across mitochondrial membrane in perfused rat hearts. , 1993, The American journal of physiology.
[27] G. Striker,et al. Insulin uptake and processing by cultured mouse glomerular endothelial cells. , 1993, The American journal of physiology.
[28] J. Schaper,et al. Ultrastructural quantitation of mitochondria and myofilaments in cardiac muscle from 10 different animal species including man. , 1992, Journal of molecular and cellular cardiology.
[29] G. Brown,et al. Analysis of the control of respiration rate, phosphorylation rate, proton leak rate and protonmotive force in isolated mitochondria using the 'top-down' approach of metabolic control theory. , 1990, European journal of biochemistry.
[30] R. Kauppinen,et al. Proton electrochemical potential of the inner mitochondrial membrane in isolated perfused rat hearts, as measured by exogenous probes. , 1983, Biochimica et biophysica acta.