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Lung eNOS and iNOS are reoxygenation time-dependent upregulated after acute hypoxia. | LitMetric

AI Article Synopsis

  • Nitric oxide (NO) is crucial in lung physiology and pathophysiology, especially after hypoxia, but there's still debate about how it behaves in this context.
  • This study focuses on the NO/NOS (Nitric Oxide/Nitric Oxide Synthase) system in Wistar rats following acute hypobaric hypoxia and examines changes in eNOS and iNOS over various reoxygenation times, measuring mRNA, protein expression, and activity levels.
  • Findings reveal that eNOS shows an immediate increase in response to hypoxia, aiding in vasodilation and bronchodilation, while iNOS and related cell damage indicators rise later, indicating a potentially harmful effect from reoxygenation.

Article Abstract

Nitric oxide plays a critical role in many physiological and physiopathological processes in the lung. Changes in the NO/NOS (Nitric Oxide/Nitric Oxide Synthase) system after hypoxia situations remain controversial in this organ, so that the aim of this work is to perform a complete study of this system in the hypoxic lung after different reoxygenation times ranging from 0 h to 5 days posthypoxia. This is a novel follow-up study carried out in Wistar rats submitted for 30 min to acute hypobaric hypoxia. We measured endothelial and inducible NOS (eNOS, iNOS) mRNA and protein expression, location, and in situ NOS activity as well as nitrated protein expression and location. In addition, NO levels were indirectly quantified (NOx) as well as the apoptosis level. Results showed an increase in eNOS mRNA, protein, activity as well as eNOS positive immunostaining at 0 h posthypoxia, coinciding with raised NOx levels. Contrary, iNOS, nitrated protein expression and apoptosis level augmented during the final reoxygenation times. The lung NO/NOS system provokes two responses to the hypoxia/reoxygenation processes: (i) eNOS is responsible of the immediate response, producing NO, which causes vasodilation and bronchodilation, and (ii) iNOS is related to the second late response, which seems to be involved in some of the deleterious consequences that hypoxia induces in the lung.

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Source
http://dx.doi.org/10.1002/ar.21141DOI Listing

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