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PMID: 7898103 Published · ppublish English Journal Article Review

Pharmacology and structure-activity relationships for KATP modulators: tissue-selective KATP openers.

Journal of cardiovascular pharmacology ·Vol. 24 Suppl 4 ·1994-00-00 ·Pages S12-7

Atwal KS

Abstract

KATP openers are recognized as having a therapeutic potential for the treatment of various cardiovascular and noncardiovascular diseases. However, the first-generation agents open KATP in a variety of tissues that limit their potential clinical utility. This review describes our studies aimed at the identification of a common pharmacophore among structurally diverse KATP openers and the discovery of tissue-selective agents that may offer advantages over the first-generation agents for the treatment of cardiovascular diseases. Compounds (e.g., BMS-182264) combining the structural features of KATP openers cromakalim and pinacidil, show smooth-muscle relaxing and antihypertensive activities comparable to their predecessors, indicating cromakalim and pinacidil may express their biologic effects through similar structural requirements. The hypothesis about common features is further supported by radioligand-binding studies showing cromakalim, pinacidil, and the combination compound BMS-182264 bind to a similar receptor site in rat aortic smooth-muscle cells. Regardless of having a pharmacologic profile similar to cromakalim and pinacidil in vascular smooth muscle, BMS-182264 had no effect on action potential duration in guinea pig papillary muscle, indicating smooth-muscle selectivity for BMS-182264. We demonstrate that no correlation exists between anti-ischemic and smooth-muscle relaxing potencies for a variety of structurally different KATP openers. Efforts to find KATP openers selective for the ischemic myocardium led to the identification of BMS-180448 which, despite having similar anti-ischemic potency to cromakalim, was significantly less active as a smooth-muscle relaxant. This compound was shown to be efficacious as an anti-ischemic agent in vivo without affecting hemodynamic variables, a potential liability of first-generation compounds.(ABSTRACT TRUNCATED AT 250 WORDS)

MeSH Terms
Action Potentials/drug effects Adenosine Triphosphate/pharmacology Animals Antihypertensive Agents/chemistry,pharmacology,therapeutic use Benzopyrans/chemistry,pharmacology,therapeutic use Cardiovascular Diseases/drug therapy Cromakalim Diazoxide/metabolism,pharmacology,therapeutic use Guanidines/chemistry,pharmacology,therapeutic use Guinea Pigs Minoxidil/analogs & derivatives,metabolism,pharmacology,therapeutic use Muscle Relaxation/drug effects Muscle, Smooth, Vascular/drug effects Niacinamide/analogs & derivatives,metabolism,pharmacology,therapeutic use Nicorandil Picolines/metabolism,pharmacology,therapeutic use Pinacidil Potassium Channels/drug effects,metabolism Pyrans/metabolism,pharmacology,therapeutic use Pyrroles/chemistry,pharmacology,therapeutic use Radioligand Assay Rats Structure-Activity Relationship Vasodilator Agents/chemistry,pharmacology,therapeutic use
Chemicals
Antihypertensive Agents Benzopyrans Guanidines Picolines Potassium Channels Pyrans Pyrroles Vasodilator Agents Cromakalim BMS 182264 Niacinamide Nicorandil minoxidil sulfate ester aprikalim Minoxidil Pinacidil Adenosine Triphosphate BMS 180448 Diazoxide
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Atwal K S
Bristol-Myers Squibb Pharmaceutical Research Institute, Princeton, New Jersey 08543-4000.
Article Info
Journal
Journal of cardiovascular pharmacology
Abbr.
J Cardiovasc Pharmacol
ISSN
0160-2446
Published
1994-00-00
Pages
S12-7
Language
English
Region
United States
NLM ID
7902492
Subset
IM
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