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Journal Abstract Search


134 related items for PubMed ID: 9472895

  • 1. Role of tyrosine kinase in serotonin-induced constriction of the basilar artery in vivo.
    Kitazono T, Ibayashi S, Nagao T, Kagiyama T, Kitayama J, Fujishima M.
    Stroke; 1998 Feb; 29(2):494-7; discussion 498. PubMed ID: 9472895
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  • 4. Serotonin stimulates protein tyrosyl phosphorylation and vascular contraction via tyrosine kinase.
    Watts SW, Yeum CH, Campbell G, Webb RC.
    J Vasc Res; 1996 Feb; 33(4):288-98. PubMed ID: 8695753
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  • 5. Role of tyrosine kinases in norepinephrine-induced contraction of vascular smooth muscle.
    Abebe W, Agrawal DK.
    J Cardiovasc Pharmacol; 1995 Jul; 26(1):153-9. PubMed ID: 7564357
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  • 6. Role of protein kinase C in constrictor responses of the rat basilar artery in vivo.
    Murray MA, Faraci FM, Heistad DD.
    J Physiol; 1992 Jan; 445():169-79. PubMed ID: 1501132
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  • 7. The role of tyrosine kinase in hypoxic constriction of sheep pulmonary artery rings.
    Uzun O, Demiryürek AT, Kanzik I.
    Eur J Pharmacol; 1998 Sep 25; 358(1):41-7. PubMed ID: 9809867
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  • 8. Dissociation of angiotensin II-stimulated activation of mitogen-activated protein kinase kinase from vascular contraction.
    Watts SW, Florian JA, Monroe KM.
    J Pharmacol Exp Ther; 1998 Sep 25; 286(3):1431-8. PubMed ID: 9732408
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  • 9. Role for tyrosine kinases in contraction of rat penile small arteries.
    Villalba N, Kun A, Stankevicius E, Simonsen U.
    J Sex Med; 2010 Jun 25; 7(6):2086-2095. PubMed ID: 20384943
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  • 10. Tyrosine kinases participate in alpha 1A-adrenoceptor-mediated vasoconstriction in perfused rat hindlimb.
    Zhu WZ, Han QD.
    Zhongguo Yao Li Xue Bao; 1998 Sep 25; 19(5):473-7. PubMed ID: 10375814
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  • 11. Tyrosine phosphorylation modulates arteriolar tone but is not fundamental to myogenic response.
    Spurrell BE, Murphy TV, Hill MA.
    Am J Physiol Heart Circ Physiol; 2000 Feb 25; 278(2):H373-82. PubMed ID: 10666067
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  • 13. Tyrosine kinase inhibitors and the contractile action of G-protein-linked vascular agonists.
    Laniyonu AA, Saifeddine M, Yang SG, Hollenberg MD.
    Can J Physiol Pharmacol; 1994 Sep 25; 72(9):1075-85. PubMed ID: 7842390
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  • 14. Ethanol-induced contractions in cerebral arteries: role of tyrosine and mitogen-activated protein kinases.
    Yang ZW, Wang J, Zheng T, Altura BT, Altura BM.
    Stroke; 2001 Jan 25; 32(1):249-57. PubMed ID: 11136944
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  • 15. Chronic administration of a tyrosine kinase inhibitor restores functional and morphological changes of the basilar artery during chronic hypertension.
    Kitayama J, Kitazono T, Ooboshi H, Ago T, Ohgami T, Fujishima M, Ibayashi S.
    J Hypertens; 2002 Nov 25; 20(11):2205-11. PubMed ID: 12409959
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  • 16. Involvement of tyrosine kinase pathway in acute hypoxic vasoconstriction in sheep isolated pulmonary vein.
    Uzun O, Tuncay Demiryürek A.
    Vascul Pharmacol; 2003 Oct 25; 40(3):175-81. PubMed ID: 13678650
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  • 17. Specific attenuation of the pressure-induced contraction of rat cerebral artery by herbimycin A.
    Masumoto N, Nakayama K, Oyabe A, Uchino M, Ishii K, Obara K, Tanabe Y.
    Eur J Pharmacol; 1997 Jul 02; 330(1):55-63. PubMed ID: 9228414
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  • 18. Role of phosphatidylinositol 3-kinase in acetylcholine-induced dilatation of rat basilar artery.
    Kitayama J, Kitazono T, Ibayashi S, Wakisaka M, Watanabe Y, Kamouchi M, Nagao T, Fujishima M.
    Stroke; 2000 Oct 02; 31(10):2487-93. PubMed ID: 11022083
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  • 19. Angiotensin II regulates vascular smooth muscle cell pH, contraction, and growth via tyrosine kinase-dependent signaling pathways.
    Touyz RM, Schiffrin EL.
    Hypertension; 1997 Aug 02; 30(2 Pt 1):222-9. PubMed ID: 9260984
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  • 20. Specific inhibition of stretch-induced increase in L-type calcium channel currents by herbimycin A in canine basilar arterial myocytes.
    Kimura M, Obara K, Sasase T, Ishikawa T, Tanabe Y, Nakayama K.
    Br J Pharmacol; 2000 Jun 02; 130(4):923-31. PubMed ID: 10864901
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