© 2020 The Authors. Bioengineering & Translational Medicine published by Wiley Periodicals LLC on behalf of American Institute of Chemical Engineers. Mitochondrial NADPH protects cells against mitochondrial oxidative stress by serving as an electron donor to antioxidant defense systems. However, due to technical challenges, it still remains unknown as to the pool size of mitochondrial NADPH, its dynamics, and NADPH/NADP+ ratio. Here, we have systemically modulated production rates of H2O2 in mitochondria and assessed mitochondrial NADPH metabolism using iNap sensors, 13C glucose isotopic tracers, and a mathematical model. Using sensors, we observed decreases in mitochondrial NADPH caused by excessive generation of mitochondrial H2O2, wher...
NADP+ and its reducing equivalent NADPH are essential for counteracting oxidative damage. Mitochondr...
Contains fulltext : 152488.pdf (publisher's version ) (Closed access)ATP can be pr...
Poised at the convergence of most catabolic and anabolic pathways, mitochondria are the center of he...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential molecule in living organ...
ATP is the dominant energy source in animals for mechanical and electrical work (for example, muscle...
The fate of all aerobic organisms is dependent on the varying intracellular concentrations of NADH a...
Mitochondria are semi-autonomous organelles that harbor one of the main cellular processes – energy ...
Mitochondria are the primary producers of intracellular H2O2, an oxidant signaling molecule that has...
Electron transport chain (ETC) defects occurring from mitochondrial disease mutations compromise ATP...
A decline in electron transport chain (ETC) activity is associated with many human diseases. Althoug...
International audienceLiving cells use signaling and regulatory mechanisms to adapt to environmental...
It is a textbook definition that in the absence of oxygen or inhibition of the mitochondrial respira...
Contains fulltext : 153196.pdf (Publisher’s version ) (Open Access)Mitochondrial r...
Objective: Energy metabolism is challenged upon nutrient stress, eventually leading to a variety of ...
Brain is one of the most energy-demanding organs. Energy in the form of ATP is produced in brain cel...
NADP+ and its reducing equivalent NADPH are essential for counteracting oxidative damage. Mitochondr...
Contains fulltext : 152488.pdf (publisher's version ) (Closed access)ATP can be pr...
Poised at the convergence of most catabolic and anabolic pathways, mitochondria are the center of he...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential molecule in living organ...
ATP is the dominant energy source in animals for mechanical and electrical work (for example, muscle...
The fate of all aerobic organisms is dependent on the varying intracellular concentrations of NADH a...
Mitochondria are semi-autonomous organelles that harbor one of the main cellular processes – energy ...
Mitochondria are the primary producers of intracellular H2O2, an oxidant signaling molecule that has...
Electron transport chain (ETC) defects occurring from mitochondrial disease mutations compromise ATP...
A decline in electron transport chain (ETC) activity is associated with many human diseases. Althoug...
International audienceLiving cells use signaling and regulatory mechanisms to adapt to environmental...
It is a textbook definition that in the absence of oxygen or inhibition of the mitochondrial respira...
Contains fulltext : 153196.pdf (Publisher’s version ) (Open Access)Mitochondrial r...
Objective: Energy metabolism is challenged upon nutrient stress, eventually leading to a variety of ...
Brain is one of the most energy-demanding organs. Energy in the form of ATP is produced in brain cel...
NADP+ and its reducing equivalent NADPH are essential for counteracting oxidative damage. Mitochondr...
Contains fulltext : 152488.pdf (publisher's version ) (Closed access)ATP can be pr...
Poised at the convergence of most catabolic and anabolic pathways, mitochondria are the center of he...