1. Two new milrinone analogs, 3-acetyl-6-phenyl-2(IH)-pyridone (SF 348) and 3-acetyl-7-methyl-7,8-dihydro-2,5 (1H, 6H) quionolinone (SF 349), increase the contractile activity of spontaneously heating and electrically driven atria isolated from reserpine-treated guinea-pigs. 2. Propranolol 0.1 μM drastically inhibits the contractile effect of SF 348, whereas that of SF 349 is unaffected. Preincubation of the atria with adenosine-deaminase suppresses the cardiac activity of SF 349, but does not affect that of SF 348. 3. SF 349 competitively antagonizes the negative inotropic effect induced by N6-(R-phenylisopropyl)-adenosine (R-PIA) and displaces N6- cyclohexyl[3H]-adenosine (3H-CHA) from its binding sites to A1 receptors in the guinea-pig heart. 4. The positive inotropic effect of SF 348 is largely sustained by activation of β-adrenoceptors, whereas SF 349 acts by displacing endogenous adenosine from its inhibitory (A1) receptors in the atria.

New inotropic agents: milrinone analogs

BOREA, Pier Andrea;
1997

Abstract

1. Two new milrinone analogs, 3-acetyl-6-phenyl-2(IH)-pyridone (SF 348) and 3-acetyl-7-methyl-7,8-dihydro-2,5 (1H, 6H) quionolinone (SF 349), increase the contractile activity of spontaneously heating and electrically driven atria isolated from reserpine-treated guinea-pigs. 2. Propranolol 0.1 μM drastically inhibits the contractile effect of SF 348, whereas that of SF 349 is unaffected. Preincubation of the atria with adenosine-deaminase suppresses the cardiac activity of SF 349, but does not affect that of SF 348. 3. SF 349 competitively antagonizes the negative inotropic effect induced by N6-(R-phenylisopropyl)-adenosine (R-PIA) and displaces N6- cyclohexyl[3H]-adenosine (3H-CHA) from its binding sites to A1 receptors in the guinea-pig heart. 4. The positive inotropic effect of SF 348 is largely sustained by activation of β-adrenoceptors, whereas SF 349 acts by displacing endogenous adenosine from its inhibitory (A1) receptors in the atria.
1997
Dorigo, P.; Fraccarollo, D.; Gaion, R. M.; Santostasi, G.; Borea, Pier Andrea; Floreani, M.; Mosti, L.; Maragno, I.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/1197919
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