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- W3215492873 abstract "Introduction: The ductus arteriosus (DA) allows placentally oxygenated blood to bypass the non-ventilated fetal lungs and enter the systemic circulation. The fetus’ systemic pO 2 is ~40 mmHg, maintaining the DA in a state of hypoxic vasodilation. As pO 2 rises, with the first breath, the DA constricts and achieves functional closure within minutes. We have identified a mitochondrial O 2 -sensor controlling functional closure within DA smooth muscle cells (DASMC). Increased pO 2 leads to increased reactive oxygen species (ROS) production by complexes I and III of the electron transport chain (ETC). These ROS are diffusible signaling molecules and inhibit redox sensitive potassium channels causing DASMC depolarization and vasoconstriction. We propose this reflects electron leak from ETC complexes. Using the term rabbit model, we investigated the differential function of ETC I vs III complex-specific electron leak suppressors (S1QEL vs S3QEL) on vascular tone in DA rings. Methods: DA’s from term rabbits (n=11 rabbits, n=29 individual DA rings) were mounted on a force transducer at ~800 mg in Krebs at a PO 2 of ~40mmHg. DA’s were subject to varying pO 2 levels (from 35-155 mmHg) and at peak O 2 constriction were treated with ETC leak suppressors, ETC complex inhibitors or vehicle controls (DMSO). Results: Exposure to normoxia caused an average 1100±62 mg increase in DA tension. S1QEL (50 μM) caused an average 20.9±6.2% reduction in DA tension (n=8) whereas S3QEL (100 μM) only reduced DA tension by 4.4±2.2% (n=4). Rotenone (complex I inhibitor) and antimycin A (complex III inhibitor) also relaxed the DA while vehicle had minimal effect (-2.6±1.5%). Conclusions: Electron leak from complex 1, but not complex 3, is implicated in DA O 2 -sensing." @default.
- W3215492873 created "2021-12-06" @default.
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- W3215492873 date "2021-11-16" @default.
- W3215492873 modified "2023-09-26" @default.
- W3215492873 title "Abstract 13389: Critical Role of Electron Leak From Mitochondrial Electron Transport Chain Complex I in Oxygen Sensing in the Rabbit Ductus Arteriosus" @default.
- W3215492873 doi "https://doi.org/10.1161/circ.144.suppl_1.13389" @default.
- W3215492873 hasPublicationYear "2021" @default.
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