Nadh Fadh2

NADH and FADH2 are reduced electron carriers that transfer energy from nutrient breakdown to ATP production in biological cells. During cellular respiration, NADH donates electrons to the mitochondrial electron transport chain at Complex I, while FADH2 enters at Complex II; successive electron transfers power proton pumping across the inner mitochondrial membrane. The resulting proton gradient drives ATP synthase, linking oxidation of carbohydrates, fats, and other fuels to oxidative phosphorylation. Comparing these carriers helps explain differences in ATP yield and supports the study of metabolism, energy balance, mitochondrial function, and cellular responses to disrupted respiration.

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Research

JoVE Journal - Medicine
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NADH Fluorescence Imaging of Isolated Biventricular Working Rabbit Hearts

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Cited by 24 •

2012

The objective is to monitor the mitochondrial redox state of isolated hearts within the context of physiologic preload and afterload pressures. A biventricular working rabbit heart model is presented. High spatiotemporal resolution fluorescence imaging of NADH is used to monitor the mitochondrial redox state of epicardial tissue.

Research

JoVE Journal - Neuroscience
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Detection of Microregional Hypoxia in Mouse Cerebral Cortex by Two-photon Imaging of Endogenous NADH Fluorescence

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Cited by 11 •

2012

Here we describe a method to directly visualize microregional tissue hypoxia in the mouse cortex in vivo. It is based on concurrent two-photon imaging of nicotinamide adenine dinucleotide (NADH) and the cortical microcirculation. This method is useful for high resolution analysis of tissue oxygen supply.

Education

JoVE Core - Cell Biology

Role of Reduced Coenzymes NADH and FADH₂

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2025

The energy released from the breakdown of the chemical bonds within nutrients can be stored either through the reduction of electron carriers or in the bonds of adenosine triphosphate (ATP). In living systems, a small class of compounds functions as mobile electron carriers, molecules that bind to and shuttle high-energy electrons between compounds in pathways. The principal electron carriers that will be considered originate from the B vitamin group and are derivatives of nucleotides; they are...

ATP Yield

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2019

Cellular respiration produces 30 - 32 ATP per glucose molecule. Although most of the ATP results from oxidative phosphorylation and the electron transport chain (ETC), 4 ATP are gained beforehand (2 from glycolysis and 2 from the citric acid cycle). The ETC is embedded in the inner mitochondrial membrane and is comprised of four main protein complexes and an ATP synthase. NADH and FADH2 pass electrons to these complexes, which pump protons into the intermembrane space. This distribution of...

The Citric Acid Cycle

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2019

The citric acid cycle, also known as the Krebs cycle or TCA cycle, consists of several energy-generating reactions that yield one ATP molecule, three NADH molecules, one FADH2 molecule, and two CO2 molecules. Acetyl CoA is the point-of-entry into the citric acid cycle, which occurs in the inner membrane (i.e., matrix) of mitochondria in eukaryotic cells or the cytoplasm of prokaryotic cells. Prior to the citric acid cycle, pyruvate oxidation produced two acetyl CoA molecules per glucose...

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