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OtherPROSTAGLANDINS, LEUKOTRIENES AND OTHER EICOSANOIDS

NO-Independent Vasodilation to Acetylcholine in the Rat Isolated Kidney Utilizes a Charybdotoxin-Sensitive, Intermediate-Conductance Ca++-Activated K+ Channel

P. Mieyal, D. Fulton, J.C. McGiff and J. Quilley
Journal of Pharmacology and Experimental Therapeutics May 1998, 285 (2) 659-664;
P. Mieyal
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D. Fulton
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J.C. McGiff
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J. Quilley
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Article Information

vol. 285 no. 2 659-664
PubMed 
9580610

Published By 
American Society for Pharmacology and Experimental Therapeutics
Print ISSN 
0022-3565
Online ISSN 
1521-0103
History 
  • Received June 23, 1997
  • Accepted January 20, 1998
  • Published online May 1, 1998.

Copyright & Usage 
The American Society for Pharmacology and Experimental Therapeutics

Author Information

  1. P. Mieyal1,
  2. D. Fulton1,
  3. J.C. McGiff1 and
  4. J. Quilley2
  1. 1Department of Pharmacology (P.M., D.F., J.C.Mc.), New York Medical College, Valhalla, New York, and 2Department of Cell Biology (J.Q.), University of Medicine and Dentistry of New Jersey, School of Osteopathic Medicine, Stratford, New Jersey
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    Journal of Pharmacology and Experimental Therapeutics
    Vol. 285, Issue 2
    1 May 1998
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    OtherPROSTAGLANDINS, LEUKOTRIENES AND OTHER EICOSANOIDS

    NO-Independent Vasodilation to Acetylcholine in the Rat Isolated Kidney Utilizes a Charybdotoxin-Sensitive, Intermediate-Conductance Ca++-Activated K+ Channel

    P. Mieyal, D. Fulton, J.C. McGiff and J. Quilley
    Journal of Pharmacology and Experimental Therapeutics May 1, 1998, 285 (2) 659-664;

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    OtherPROSTAGLANDINS, LEUKOTRIENES AND OTHER EICOSANOIDS

    NO-Independent Vasodilation to Acetylcholine in the Rat Isolated Kidney Utilizes a Charybdotoxin-Sensitive, Intermediate-Conductance Ca++-Activated K+ Channel

    P. Mieyal, D. Fulton, J.C. McGiff and J. Quilley
    Journal of Pharmacology and Experimental Therapeutics May 1, 1998, 285 (2) 659-664;
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