x
Filter:
Filters applied
- Bioenergetics
- Barros, L FelipeRemove Barros, L Felipe filter
- AR-C155858Remove AR-C155858 filter
Bioenergetics
1 Results
- Editors' PicksOpen Access
Nanomolar nitric oxide concentrations quickly and reversibly modulate astrocytic energy metabolism
Journal of Biological ChemistryVol. 292Issue 22p9432–9438Published online: March 24, 2017- Alejandro San Martín
- Robinson Arce-Molina
- Alex Galaz
- Gustavo Pérez-Guerra
- L. Felipe Barros
Cited in Scopus: 30Nitric oxide (NO) is an intercellular messenger involved in multiple bodily functions. Prolonged NO exposure irreversibly inhibits respiration by covalent modification of mitochondrial cytochrome oxidase, a phenomenon of pathological relevance. However, the speed and potency of NO's metabolic effects at physiological concentrations are incompletely characterized. To this end, we set out to investigate the metabolic effects of NO in cultured astrocytes from mice by taking advantage of the high spatiotemporal resolution afforded by genetically encoded Förster resonance energy transfer (FRET) nanosensors.