Cytochrome C

Titanium dioxide nanoparticles cause apoptosis in BEAS-2B cells through the caspase 8/t-Bid-independent mitochondrial pathway

Titanium / Mitochondria / Apoptosis / Metal Nanoparticles / Signal Transduction / Cell line / Humans / Reactive Oxygen Species / Cytochrome C / Titanium dioxide / Cell Viability / Caspase / Cell Survival / ENVIRONMENTAL SCIENCE AND MANAGEMENT / Cell line / Humans / Reactive Oxygen Species / Cytochrome C / Titanium dioxide / Cell Viability / Caspase / Cell Survival / ENVIRONMENTAL SCIENCE AND MANAGEMENT

Mitochondria and cell death. Mechanistic aspects and methodological issues

Fluorescence / Calcium / Membrane Proteins / Mitochondria / Apoptosis / Caspases / Humans / Permeability / Animals / Cell Death / Cytochrome C / European / Necrosis / Ion Transport / Biochemistry and cell biology / Caspases / Humans / Permeability / Animals / Cell Death / Cytochrome C / European / Necrosis / Ion Transport / Biochemistry and cell biology

Serotonin is a novel survival factor of cardiomyocytes: mitochondria as a target of 5HT2B-receptor signaling

Physiology / Apoptosis / Molecular Mechanics / Signal Transduction / Caspases / Serotonin / Mice / Animals / Cytochrome C / NF-kappa B / Animal Model / Cytoprotection / Medical Physiology / Cytochrome oxidase / Dilated cardiomyopathy / Serotonin Receptors / Enzyme activity / Congenital Heart Disease / Cell Survival / Knockout Mice / Succinate Dehydrogenase / Cardiac Disease / Biochemistry and cell biology / DNA fragmentation / Cardiac function / Serotonin / Mice / Animals / Cytochrome C / NF-kappa B / Animal Model / Cytoprotection / Medical Physiology / Cytochrome oxidase / Dilated cardiomyopathy / Serotonin Receptors / Enzyme activity / Congenital Heart Disease / Cell Survival / Knockout Mice / Succinate Dehydrogenase / Cardiac Disease / Biochemistry and cell biology / DNA fragmentation / Cardiac function
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