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PMID: 17008638 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Superoxide dismutase improves oxygenation and reduces oxidation in neonatal pulmonary hypertension.

American journal of respiratory and critical care medicine ·Vol. 174 ·No. 12 ·2006-12-15 ·Pages 1370-7

Lakshminrusimha S, Russell JA, Wedgwood S, Gugino SF, Kazzaz JA, Davis JM, Steinhorn RH

Abstract

Hyperoxic ventilation in the management of persistent pulmonary hypertension of the newborn (PPHN) can result in the formation of reactive oxygen species, such as superoxide anions, which can inactivate nitric oxide (NO) and cause vasoconstriction and oxidation. To compare the effect of intratracheal recombinant human superoxide dismutase (rhSOD) and/or inhaled NO (iNO) on systemic oxygenation, contractility of pulmonary arteries (PAs), and lung reactive oxygen species (isoprostane, 3-nitrotyrosine) levels in neonatal lambs with PPHN. Six newborn lambs with PPHN (induced by antenatal ductal ligation) were killed at birth. Twenty-six PPHN lambs were ventilated for 24 h with 100% O(2) alone (n = 6) or O(2) combined with rhSOD (5 mg/kg intratracheally) at birth (n = 4), rhSOD at 4 h of age (n = 5), iNO (20 ppm, n = 5), or rhSOD + iNO (n = 6). Contraction responses of fifth-generation PAs to norepinephrine and KCl, lung isoprostane levels, and 3-nitrotyrosine fluorescent intensity were measured. Systemic oxygenation was impaired in PPHN lambs and significantly improved (up to threefold) in both rhSOD groups with or without iNO. Oxygenation improved more rapidly with the combination of rhSOD + iNO compared with either intervention alone. Norepinephrine- and KCl-induced contractions and lung isoprostane levels were significantly increased by 100% O(2) compared with nonventilated newborn lambs with PPHN. Both rhSOD and iNO mitigated the increased PA contraction response and lung isoprostane levels. Intratracheal rhSOD decreased the enhanced lung 3-nitrotyrosine fluorescence observed with iNO therapy. Intratracheal rhSOD and/or iNO rapidly increase oxygenation and reduce both vasoconstriction and oxidation in newborn lambs with PPHN. This has important implications for clinical trials of rhSOD and iNO in newborn infants with PPHN.

MeSH Terms
Animals Animals, Newborn Female Humans Infant, Newborn Isoprostanes/analysis Lung/chemistry Male Nitric Oxide/pharmacology Norepinephrine/pharmacology Oxidation-Reduction/drug effects Oxygen/metabolism Persistent Fetal Circulation Syndrome/physiopathology Potassium Chloride/pharmacology Pulmonary Artery/drug effects Reactive Oxygen Species Recombinant Proteins/pharmacology Sheep Superoxide Dismutase/pharmacology Tyrosine/analogs & derivatives,analysis Vasoconstriction/drug effects
Chemicals
Isoprostanes Reactive Oxygen Species Recombinant Proteins Nitric Oxide 3-nitrotyrosine Tyrosine Potassium Chloride Superoxide Dismutase Oxygen Norepinephrine
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Lakshminrusimha Satyan
Department of Pediatrics, State University of New York at Buffalo, NY, USA. [email protected]
Russell James A
Wedgwood Stephen
Gugino Sylvia F
Kazzaz Jeffrey A
Davis Jonathan M
Steinhorn Robin H
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Article Info
Journal
American journal of respiratory and critical care medicine
Abbr.
Am J Respir Crit Care Med
ISSN
1073-449X
Published
2006-12-15
Epub
2006-00-28
Pages
1370-7
Language
English
Region
United States
NLM ID
9421642
PMCID
PMC2111046
Subset
IM
Grants
NHLBI NIH HHS · R01 HL054705 · United States
NHLBI NIH HHS · R01 HL054705-10 · United States
NHLBI NIH HHS · HL-54705 · United States
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