Mitochondrial Membrane Potential

Granzyme B of cytotoxic T cells induces extramitochondrial reactive oxygen species production via caspase-dependent NADPH oxidase activation

Immunology / Immune response / Cell Biology / Mitochondria / Apoptosis / Signal Transduction / Caspases / Cell line / Allergy / Mitochondrial DNA / Humans / Reactive Oxygen Species / Mice / Animals / Cell Death / Cytochrome C / NADPH oxidase / Immunology & Cell Biology / Oxidative phosphorylation / Mitochondrial Membrane Potential / Conformational Change / Biochemistry and cell biology / Cytotoxic T cells / Immunoblotting / Signal Transduction / Caspases / Cell line / Allergy / Mitochondrial DNA / Humans / Reactive Oxygen Species / Mice / Animals / Cell Death / Cytochrome C / NADPH oxidase / Immunology & Cell Biology / Oxidative phosphorylation / Mitochondrial Membrane Potential / Conformational Change / Biochemistry and cell biology / Cytotoxic T cells / Immunoblotting

Cytoplasmic transfer in oocytes: biochemical aspects

Humans / Animals / Blastocyst / Clinical Sciences / Public health systems and services research / Fertilization in Vitro / Oocytes / Mitochondrial Membrane Potential / Cytoplasm / Direct Injection / Embryo Development / Fertilization in Vitro / Oocytes / Mitochondrial Membrane Potential / Cytoplasm / Direct Injection / Embryo Development

From mitochondrial dynamics to arrhythmias

Oxidative Stress / Coupled Oscillator / Humans / Reactive Oxygen Species / Animals / The / Oscillations / Cardiac Arrhythmias / Action potential / Arrhythmia / Mitochondrial Membrane Potential / Ventricular Arrhythmia / Biochemistry and cell biology / Redox Potential / The / Oscillations / Cardiac Arrhythmias / Action potential / Arrhythmia / Mitochondrial Membrane Potential / Ventricular Arrhythmia / Biochemistry and cell biology / Redox Potential
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