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PMID: 18757525 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Reactive oxygen species from NADPH oxidase contribute to altered pulmonary vascular responses in piglets with chronic hypoxia-induced pulmonary hypertension.

American journal of physiology. Lung cellular and molecular physiology ·Vol. 295 ·No. 5 ·2008-11-00 ·Pages L881-8

Fike CD, Slaughter JC, Kaplowitz MR, Zhang Y, Aschner JL

Abstract

Our main objective was to determine whether reactive oxygen species (ROS), such as superoxide (O(2)(-)) and hydrogen peroxide (H(2)O(2)), contribute to altered pulmonary vascular responses in piglets with chronic hypoxia-induced pulmonary hypertension. Piglets were raised in either room air (control) or hypoxia for 3 days. The effect of the cell-permeable superoxide dismutase mimetic (SOD; M40403) and/or PEG-catalase (PEG-CAT) on responses to acetylcholine (ACh) was measured in endothelium-intact and denuded pulmonary resistance arteries (PRAs; 90-to-300-microm diameter). To determine whether NADPH oxidase is an enzymatic source of ROS, PRA responses to ACh were measured in the presence and absence of a NADPH oxidase inhibitor, apocynin (APO). A Western blot technique was used to assess expression of the NADPH oxidase subunit, p67phox. A lucigenin-derived chemiluminescence technique was used to measure ROS production stimulated by the NADPH oxidase substrate, NADPH. ACh responses, which were dilation in intact control arteries but constriction in both intact and denuded hypoxic arteries, were diminished by M40403, PEG-CAT, the combination of M40403 plus PEG-CAT, as well as by APO. Although total amounts were not different, membrane-associated p67phox was greater in PRAs from hypoxic compared with control piglets. NADPH-stimulated lucigenin luminescence was nearly doubled in PRAs from hypoxic vs. control piglets. We conclude that ROS generated by NADPH oxidase contribute to the aberrant pulmonary arterial responses in piglets exposed to 3 days of hypoxia.

MeSH Terms
Acetylcholine/pharmacology Animals Chronic Disease Hypertension, Pulmonary/enzymology Hypoxia/complications Immunoblotting Luminescence NADP/pharmacology NADPH Oxidases/metabolism Pulmonary Artery/drug effects Pulmonary Circulation/drug effects Reactive Oxygen Species/metabolism Swine Vascular Resistance/drug effects
Chemicals
Reactive Oxygen Species NADP NADPH Oxidases Acetylcholine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Fike Candice D
Department of Pediatrics, Vanderbilt University Medical Center, 2215 B Garland Avenue, Nashville, TN 37232-0656, USA. [email protected]
Slaughter James C
Kaplowitz Mark R
Zhang Yongmei
Aschner Judy L
References (55)
55 references, click to expand
  1. Overestimation of NADH-driven vascular oxidase activity due to lucigenin artifacts.
    Free Radic Biol Med. 2002 Mar 1;32(5):446-53 PMID: 11864784
  2. Arachidonic acid metabolites and an early stage of pulmonary hypertension in chronically hypoxic newborn pigs.
    Am J Physiol Lung Cell Mol Physiol. 2003 Feb;284(2):L316-23 PMID: 12388340
  3. Role of superoxide as a signaling molecule.
    News Physiol Sci. 2004 Jun;19:120-3 PMID: 15143206
  4. Endothelial dysfunction in cardiovascular diseases: the role of oxidant stress.
    Circ Res. 2000 Nov 10;87(10):840-4 PMID: 11073878
  5. Endothelium-dependent relaxations of piglet pulmonary arteries augment with maturation.
    Pediatr Res. 1991 Aug;30(2):176-80 PMID: 1896263
  6. Endothelium-dependent contractions in hypertension.
    Br J Pharmacol. 2005 Feb;144(4):449-58 PMID: 15655530
  7. The role of nitric oxide synthase-derived reactive oxygen species in the altered relaxation of pulmonary arteries from lambs with increased pulmonary blood flow.
    Am J Physiol Heart Circ Physiol. 2007 Sep;293(3):H1491-7 PMID: 17513498
  8. Paracrine role of adventitial superoxide anion in mediating spontaneous tone of the isolated rat aorta in angiotensin II-induced hypertension.
    Hypertension. 1999 May;33(5):1225-32 PMID: 10334816
  9. Cyclooxygenase-2 and an early stage of chronic hypoxia-induced pulmonary hypertension in newborn pigs.
    J Appl Physiol (1985). 2005 Mar;98(3):1111-8; discussion 1091 PMID: 15516370
  10. Endothelial dysfunction and subendothelial monocyte macrophages in hypertension. Effect of angiotensin converting enzyme inhibition.
    Hypertension. 1991 Aug;18(2):132-41 PMID: 1653185
  11. Structural organization of the neutrophil NADPH oxidase: phosphorylation and translocation during priming and activation.
    J Leukoc Biol. 2005 Nov;78(5):1025-42 PMID: 16204621
  12. Electron spin resonance characterization of the NAD(P)H oxidase in vascular smooth muscle cells.
    Free Radic Biol Med. 2001 Mar 15;30(6):603-12 PMID: 11295358
  13. Hydrogen peroxide activation of cytosolic phospholipase A2 in vascular smooth muscle cells.
    Biochim Biophys Acta. 1995 Feb 16;1265(1):67-72 PMID: 7857986
  14. Pulmonary artery NADPH-oxidase is activated in hypoxic pulmonary vasoconstriction.
    Am J Respir Cell Mol Biol. 1996 Nov;15(5):633-44 PMID: 8918370
  15. Apocynin is not an inhibitor of vascular NADPH oxidases but an antioxidant.
    Hypertension. 2008 Feb;51(2):211-7 PMID: 18086956
  16. Evidence for the activation of the signal-responsive phospholipase A2 by exogenous hydrogen peroxide.
    Biochem Pharmacol. 1995 Sep 7;50(6):753-61 PMID: 7575634
  17. Effect of chronic hypoxia on pulmonary vascular pressures in isolated lungs of newborn pigs.
    J Appl Physiol (1985). 1994 Dec;77(6):2853-62 PMID: 7896632
  18. Nox enzymes, ROS, and chronic disease: an example of antagonistic pleiotropy.
    Free Radic Biol Med. 2007 Aug 1;43(3):332-47 PMID: 17602948
  19. Role of reactive oxygen species and gp91phox in endothelial dysfunction of pulmonary arteries induced by chronic hypoxia.
    Br J Pharmacol. 2006 Jul;148(5):714-23 PMID: 16715116
  20. NAD(P)H oxidase: role in cardiovascular biology and disease.
    Circ Res. 2000 Mar 17;86(5):494-501 PMID: 10720409
  21. Mechanisms of bradykinin-mediated dilation in newborn piglet pulmonary conducting and resistance vessels.
    Am J Physiol Lung Cell Mol Physiol. 2002 Aug;283(2):L373-82 PMID: 12114199
  22. Intracellular localization and preassembly of the NADPH oxidase complex in cultured endothelial cells.
    J Biol Chem. 2002 May 31;277(22):19952-60 PMID: 11893732
  23. The vascular NAD(P)H oxidases as therapeutic targets in cardiovascular diseases.
    Trends Pharmacol Sci. 2003 Sep;24(9):471-8 PMID: 12967772
  24. Methods of detection of vascular reactive species: nitric oxide, superoxide, hydrogen peroxide, and peroxynitrite.
    Circ Res. 2001 Aug 3;89(3):224-36 PMID: 11485972
  25. Free radicals and antioxidants in normal physiological functions and human disease.
    Int J Biochem Cell Biol. 2007;39(1):44-84 PMID: 16978905
  26. Activation of Rho/Rho kinase signaling pathway by reactive oxygen species in rat aorta.
    Am J Physiol Heart Circ Physiol. 2004 Oct;287(4):H1495-500 PMID: 15371261
  27. Random-effects models for longitudinal data.
    Biometrics. 1982 Dec;38(4):963-74 PMID: 7168798
  28. Electrophysiologically distinct smooth muscle cell subtypes in rat conduit and resistance pulmonary arteries.
    J Physiol. 2002 Feb 1;538(Pt 3):867-78 PMID: 11826170
  29. H2O2 increases production of constrictor prostaglandins in smooth muscle leading to enhanced arteriolar tone in Type 2 diabetic mice.
    Am J Physiol Heart Circ Physiol. 2007 Jan;292(1):H649-56 PMID: 16997891
  30. The NOX family of ROS-generating NADPH oxidases: physiology and pathophysiology.
    Physiol Rev. 2007 Jan;87(1):245-313 PMID: 17237347
  31. Transforming growth factor-beta1 induces Nox4 NAD(P)H oxidase and reactive oxygen species-dependent proliferation in human pulmonary artery smooth muscle cells.
    Am J Physiol Lung Cell Mol Physiol. 2006 Apr;290(4):L661-L673 PMID: 16227320
  32. Increased superoxide generation is associated with pulmonary hypertension in fetal lambs: a role for NADPH oxidase.
    Circ Res. 2003 Apr 4;92(6):683-91 PMID: 12609968
  33. Hydrogen peroxide acts as both vasodilator and vasoconstrictor in the control of perfused mouse mesenteric resistance arteries.
    J Hypertens. 2005 Mar;23(3):571-9 PMID: 15716699
  34. Hypoxia-dependent regulation of nonphagocytic NADPH oxidase subunit NOX4 in the pulmonary vasculature.
    Circ Res. 2007 Aug 3;101(3):258-67 PMID: 17585072
  35. Hydrogen peroxide is an endothelium-derived hyperpolarizing factor in mice.
    J Clin Invest. 2000 Dec;106(12):1521-30 PMID: 11120759
  36. Hypoxic pulmonary hypertension: role of superoxide and NADPH oxidase (gp91phox).
    Am J Physiol Lung Cell Mol Physiol. 2006 Jan;290(1):L2-10 PMID: 16085672
  37. Superoxide dismutase improves oxygenation and reduces oxidation in neonatal pulmonary hypertension.
    Am J Respir Crit Care Med. 2006 Dec 15;174(12):1370-7 PMID: 17008638
  38. Oxygen-derived free radicals mediate endothelium-dependent contractions to acetylcholine in aortas from spontaneously hypertensive rats.
    Br J Pharmacol. 2002 May;136(1):104-10 PMID: 11976274
  39. Enhanced vascular reactivity of small mesenteric arteries from diabetic mice is associated with enhanced oxidative stress and cyclooxygenase products.
    Br J Pharmacol. 2005 Apr;144(7):953-60 PMID: 15685205
  40. Impaired NO signaling in small pulmonary arteries of chronically hypoxic newborn piglets.
    Am J Physiol Lung Cell Mol Physiol. 2004 Jun;286(6):L1244-54 PMID: 14766668
  41. Cell signaling. H2O2, a necessary evil for cell signaling.
    Science. 2006 Jun 30;312(5782):1882-3 PMID: 16809515
  42. Endothelial denudation and myointimal thickening in the rat carotid artery induced by the passage of bubbles.
    Exp Mol Pathol. 1984 Jun;40(3):340-8 PMID: 6723938
  43. A maturational shift in pulmonary K+ channels, from Ca2+ sensitive to voltage dependent.
    Am J Physiol. 1998 Dec;275(6):L1019-25 PMID: 9843837
  44. Hypoxia-induced reactive oxygen species downregulate ETB receptor-mediated contraction of rat pulmonary arteries.
    Am J Physiol Lung Cell Mol Physiol. 2006 Mar;290(3):L570-8 PMID: 16227321
  45. Chronic hypoxia alters nitric oxide-dependent pulmonary vascular responses in lungs of newborn pigs.
    J Appl Physiol (1985). 1996 Nov;81(5):2078-87 PMID: 8941532
  46. A note on the power of Fisher's least significant difference procedure.
    Pharm Stat. 2006 Oct-Dec;5(4):253-63 PMID: 17128424
  47. The NOX on pulmonary hypertension.
    Circ Res. 2007 Aug 3;101(3):224-6 PMID: 17673680
  48. Differential distribution of electrophysiologically distinct myocytes in conduit and resistance arteries determines their response to nitric oxide and hypoxia.
    Circ Res. 1996 Mar;78(3):431-42 PMID: 8593702
  49. Cyclooxygenase contracting factors and altered pulmonary vascular responses in chronically hypoxic newborn pigs.
    J Appl Physiol (1985). 2002 Jan;92(1):67-74 PMID: 11744644
  50. Superoxide-NO interaction decreases flow- and agonist-induced dilations of coronary arterioles in Type 2 diabetes mellitus.
    Am J Physiol Heart Circ Physiol. 2003 Oct;285(4):H1404-10 PMID: 12805026
  51. Contractions to oxygen-derived free radicals are augmented in aorta of the spontaneously hypertensive rat.
    Hypertension. 1989 Jun;13(6 Pt 2):859-64 PMID: 2567706
  52. Modulation of vascular smooth muscle signaling by reactive oxygen species.
    Physiology (Bethesda). 2006 Aug;21:269-80 PMID: 16868316
  53. Biphasic effect of hydrogen peroxide on skeletal muscle arteriolar tone via activation of endothelial and smooth muscle signaling pathways.
    J Appl Physiol (1985). 2004 Sep;97(3):1130-7 PMID: 15208297
  54. Acute hypoxia simultaneously induces the expression of gp91phox and endothelial nitric oxide synthase in the porcine pulmonary artery.
    Thorax. 2005 Apr;60(4):305-13 PMID: 15790986
  55. Reactive oxygen species in cell signaling.
    Am J Physiol Lung Cell Mol Physiol. 2000 Dec;279(6):L1005-28 PMID: 11076791
Article Info
Journal
American journal of physiology. Lung cellular and molecular physiology
Abbr.
Am J Physiol Lung Cell Mol Physiol
ISSN
1040-0605
Published
2008-11-00
Epub
2008-00-29
Pages
L881-8
Language
English
Region
United States
NLM ID
100901229
PMCID
PMC2584882
Subset
IM
Grants
NHLBI NIH HHS · R01 HL068572 · United States
NHLBI NIH HHS · R01 HL 075511 · United States
NHLBI NIH HHS · R01 HL 68572 · United States
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