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Journal Abstract Search


193 related items for PubMed ID: 1850467

  • 1. Pertussis toxin reduces endothelium-dependent and independent responses to alpha-2- adrenergic stimulation in systemic canine arteries and veins.
    Miller VM, Flavahan NA, Vanhoutte PM.
    J Pharmacol Exp Ther; 1991 Apr; 257(1):290-3. PubMed ID: 1850467
    [Abstract] [Full Text] [Related]

  • 2. Pertussis toxin inhibits contractions but not endothelium-dependent relaxations of rabbit pulmonary artery in response to acetylcholine and other agonists.
    Hohlfeld J, Liebau S, Förstermann U.
    J Pharmacol Exp Ther; 1990 Jan; 252(1):260-4. PubMed ID: 2153802
    [Abstract] [Full Text] [Related]

  • 3. Inhibition of endothelium-dependent relaxations by phorbol myristate acetate in canine coronary arteries: role of a pertussis toxin-sensitive G-protein.
    Flavahan NA, Shimokawa H, Vanhoutte PM.
    J Pharmacol Exp Ther; 1991 Jan; 256(1):50-5. PubMed ID: 1899121
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  • 4. Selective production of endothelium-derived nitric oxide in canine femoral veins.
    Miller VM.
    Am J Physiol; 1991 Sep; 261(3 Pt 2):H677-82. PubMed ID: 1679603
    [Abstract] [Full Text] [Related]

  • 5. Pertussis toxin inhibits endothelium-dependent relaxations to certain agonists in porcine coronary arteries.
    Flavahan NA, Shimokawa H, Vanhoutte PM.
    J Physiol; 1989 Jan; 408():549-60. PubMed ID: 2778738
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  • 7. Augmented endothelium-derived hyperpolarizing factor-mediated relaxations attenuate endothelial dysfunction in femoral and mesenteric, but not in carotid arteries from type I diabetic rats.
    Shi Y, Ku DD, Man RY, Vanhoutte PM.
    J Pharmacol Exp Ther; 2006 Jul; 318(1):276-81. PubMed ID: 16565165
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  • 9. Endothelium-derived hyperpolarizing factor mediated relaxations in pig coronary arteries do not involve Gi/o proteins.
    Ng KF, Leung SW, Man RY, Vanhoutte PM.
    Acta Pharmacol Sin; 2008 Dec; 29(12):1419-24. PubMed ID: 19026160
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  • 10. Natural course of the impairment of endothelium-dependent relaxations after balloon endothelium removal in porcine coronary arteries. Possible dysfunction of a pertussis toxin-sensitive G protein.
    Shimokawa H, Flavahan NA, Vanhoutte PM.
    Circ Res; 1989 Sep; 65(3):740-53. PubMed ID: 2504508
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  • 13. Increased production of nitric oxide in coronary arteries during congestive heart failure.
    O'Murchu B, Miller VM, Perrella MA, Burnett JC.
    J Clin Invest; 1994 Jan; 93(1):165-71. PubMed ID: 8282783
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  • 14. Effects of lumbar sympathectomy on the properties of both endothelium and smooth muscle cells of the canine femoral artery and autogenous vein grafts under poor runoff conditions.
    Funahashi S, Komori K, Itoh H, Okadome K, Sugimachi K.
    J Surg Res; 1996 Aug; 64(2):184-9. PubMed ID: 8812631
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  • 16. Biphasic release of endothelium-derived relaxing factor(s) by acetylcholine from perfused canine femoral arteries. Characterization of muscarinic receptors.
    Rubanyi GM, McKinney M, Vanhoutte PM.
    J Pharmacol Exp Ther; 1987 Mar; 240(3):802-8. PubMed ID: 2435886
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  • 17. Modulation of endothelium-derived nitric oxide in canine femoral veins.
    Miller VM, Barber DA.
    Am J Physiol; 1996 Aug; 271(2 Pt 2):H668-73. PubMed ID: 8770110
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  • 18. The sydnonimine C87-3754 evokes endothelium-independent relaxations and prevents endothelium-dependent contractions in blood vessels of the dog.
    Schini VB, Bond R, Gao Y, Illiano S, Junquero DC, Mombouli JV, Nagao T, Smart F, Vanhoutte PM.
    J Cardiovasc Pharmacol; 1993 Aug; 22 Suppl 7():S10-6. PubMed ID: 7504762
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  • 19. Lysophosphatidylcholine modifies G protein-dependent signaling in porcine endothelial cells.
    Flavahan NA.
    Am J Physiol; 1993 Mar; 264(3 Pt 2):H722-7. PubMed ID: 8456975
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  • 20. The endothelium and vascular effects of the ACE inhibitor trandolaprilat.
    Vidal M, Joly G, Mombouli JV, Boulanger CM, Vanhoutte PM.
    J Cardiovasc Pharmacol; 1994 Mar; 23 Suppl 4():S1-5. PubMed ID: 7527094
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