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Inhibition of Nitro-Oxidative Stress Attenuates Pulmonary and Systemic Injury Induced by High–Tidal Volume Mechanical Ventilation
- Source :
- Shock. 44:36-43
- Publication Year :
- 2015
- Publisher :
- Ovid Technologies (Wolters Kluwer Health), 2015.
-
Abstract
- Mechanisms contributing to pulmonary and systemic injury induced by high tidal volume (VT) mechanical ventilation are not well known. We tested the hypothesis that increased peroxynitrite formation is involved in organ injury and dysfunction induced by mechanical ventilation. Male Sprague-Dawley rats were subject to low- (VT, 9 mL/kg; positive end-expiratory pressure, 5 cmH2O) or high- (VT, 25 mL/kg; positive end-expiratory pressure, 0 cmH2O) VT mechanical ventilation for 120 min, and received 1 of 3 treatments: 3-aminobenzamide (3-AB, 10 mg/kg, intravenous, a poly adenosine diphosphate ribose polymerase [PARP] inhibitor), or the metalloporphyrin manganese(III) tetrakis(1-methyl-4-pyridyl)porphyrin (MnTMPyP, 5 mg/kg intravenous, a peroxynitrite scavenger), or no treatment (control group), 30 min before starting the mechanical ventilation protocol (n = 8 per group, 6 treatment groups). We measured mean arterial pressure, peak inspiratory airway pressure, blood chemistry, and gas exchange. Oxidation (fluorescence for oxidized dihydroethidium), protein nitration (immunofluorescence and Western blot for 3-nitrotyrosine), PARP protein (Western blot) and gene expression of the nitric oxide (NO) synthase (NOS) isoforms (quantitative real-time reverse transcription polymerase chain reaction) were measured in lung and vascular tissue. Lung injury was quantified by light microscopy. High-VT mechanical ventilation was associated with hypotension, increased peak inspiratory airway pressure, worsened oxygenation; oxidation and protein nitration in lung and aortic tissue; increased PARP protein in lung; up-regulation of NOS isoforms in lung tissue; signs of diffuse alveolar damage at histological examination. Treatment with 3AB or MnTMPyP attenuated the high-VT mechanical ventilation-induced changes in pulmonary and cardiovascular function; down-regulated the expression of NOS1, NOS2, and NOS3; decreased oxidation and nitration in lung and aortic tissue; and attenuated histological changes. Increased peroxynitrite formation is involved in mechanical ventilation-induced pulmonary and vascular dysfunction. Sin financiación 3.048 JCR (2015) Q1, 33/200 Surgery; Q2, 12/33 Critical care medicine, 29/70 Hematology, 23/63 Peripheral vascular disease UEM
- Subjects :
- Male
Metalloporphyrins
Ventilator-Induced Lung Injury
medicine.medical_treatment
Nitric Oxide
Critical Care and Intensive Care Medicine
medicine.disease_cause
Rats, Sprague-Dawley
chemistry.chemical_compound
High tidal volume
medicine
Animals
Mechanical ventilation
Chemistry
Aparato respiratorio
Respiration, Artificial
Respiración
Rats
Isoenzymes
Oxidative Stress
Anesthesia
Benzamides
Emergency Medicine
Nitro
Nitric Oxide Synthase
Poly(ADP-ribose) Polymerases
Peroxynitrite
Oxidative stress
Subjects
Details
- ISSN :
- 10732322
- Volume :
- 44
- Database :
- OpenAIRE
- Journal :
- Shock
- Accession number :
- edsair.doi.dedup.....4e98d2c974f8a30a02f60400bef9d8e9
- Full Text :
- https://doi.org/10.1097/shk.0000000000000381