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Simultaneous Measurement of Superoxide/Hydrogen Peroxide and NADH Production by Flavin-containing Mitochondrial Dehydrogenases
Published on: February 24, 2018
An H2O2-Aldehyde Dehydrogenase 2-Malondialdehyde Axis Underlies Mitochondrial Viscosity Elevation in Hepatic
Cong Fang1, Qi Xie1, Lei Peng1
1Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research (Ministry of Education), College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha410081, China.
Abstract:
Hepatic ischemia-reperfusion injury (HIRI) is accompanied by oxidative stress and mitochondrial microenvironmental disruption, but how they are dynamically coupled remains unclear. Herein, a mitochondria-targeted dual-parameter probe, P3, was designed for simultaneous detection of mitochondrial viscosity and H2O2 to reveal their interrelationship and synergistic roles in HIRI. Using P3, we visualized the coordinated elevation of mitochondrial viscosity and H2O2 in HIRI from HepG2 cells to mouse liver, finding that both signals emerged during ischemia and were further amplified upon reperfusion. More importantly, a mitochondrial H2O2-aldehyde dehydrogenase 2 (ALDH2)-malondialdehyde (MDA)-mitochondrial viscosity cascade signaling pathway was uncovered in HIRI, elucidating the intrinsic link between abnormal mitochondrial viscosity and H2O2. This research establishes a strategy for simultaneously visualizing oxidative stress and mitochondrial microenvironmental remodeling during HIRI, and provides mechanistic insight into pathological coupling.
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