Skip to main content
Log in

Stereoisomers of BAY K 8644 show opposite activities in the normal and ischaemic rat heart

A comparison with nifedipine

  • Published:
Naunyn-Schmiedeberg's Archives of Pharmacology Aims and scope Submit manuscript

Summary

The effects of the stereoisomers and the racemate of the calcium agonist BAY K 8644 and the calcium antagonist nifedipine were studied on the Langendorff-perfused rat heart, subjected to 30 min of global ischaemia. The results show that (−)- and (±)-BAY K 8644 induced a strong positive inotropic effect at 100 and 1000 nmol/l and a vasoconstricting effect which was most prominent at 1 and 10 nmol/l, respectively. At higher concentrations the flow reduction was inverted to a flow increase, closely related to the positive inotropic activity. The inotropic status induced by the agonist before the onset of ischaemia was reflected in an accelerated development of the diastolic contracture during ischaemia. During the reperfusion, a complex triphasic effect on the recovery was found, in which probably positive inotropism, vasoconstriction, metabolic and mechanical factors are involved. The (+)-enantiomer of BAY K 8644 behaved as a weak calcium antagonist showing merely vasodilatation, which accelerated the recovery from the ischaemic contracture at reperfusion. The calcium antagonistic, vasodilating effects of the (+)-enantiomer were expressed in the racemate only during the reperfusion phase, where it took an intermediate position between the effects of the (−)- and (+)-enantiomer. In contrast, nifedipine, at negative inotropic — energy saving — concentrations, diminished the height and delayed the development of the energy deprivation-induced left ventricular diastolic contracture during ischaemia. The time needed for recovery from the contracture during reperfusion was significantly shortened already at a 100 times lower, vasodilating concentration of nifedipine.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Amsterdam FTM van, Haas M, Zaagsma J (1987) Dynamic and kinetic differences of the vascular and myocardial effects of calcium antagonists in the rat heart. J Cardiovasc Pharmacol 9:570–577

    Google Scholar 

  • Amsterdam FTM van, Zaagsma J (1988a) Stereoisomers of calcium antagonists discriminate between coronary vascular and myocardial sites. Naunyn-Schmiedeberg's Arch Pharmacol 337: 213–219

    Google Scholar 

  • Amsterdam FTM van (1988b) Molecular pharmacology of calcium antagonists in the normal and ischaemic heart. Ph. D. Thesis, University of Groningen, pp 65–80

  • Arnold G, Kosche F, Miessner E, Neitzert A, Lochner W (1968) The importance of the perfusion pressure in the coronary arteries for the contractility and the oxygen consumption of the heart. Pflügers Arch 299:339–356

    Google Scholar 

  • Barry WH, Peeters GA, Rasmussen CAF, Cunningham MJ (1987) Role of changes in [Ca2+]i in energy deprivation contracture. Circ Res 61:726–734

    Google Scholar 

  • Bechem M, Schramm M (1987) Calcium-angonists. J Mol Cell Cardiol 19:63–75

    Google Scholar 

  • Bellemann P (1984) Binding properties of a novel calcium channel activating dihydropyridine in monolayer cultures of beating myocytes. FEBS Lett 167:88–92

    Google Scholar 

  • Cognard C, Romey G, Galizzi J-P, Fosset M, Lazdunski M (1986) Dihydropyridine-sensitive Ca2+-channels in mammalian skeletal muscle cells in culture: Electrophysiological properties and interactions with Ca2+ channel activator (Bay K 8644) and inhibitor (PN 200–110). Proc Natl Acad Sci USA 83:1518–1522

    Google Scholar 

  • Cook NS, Hof RP (1985) Cardioprotection by the calcium antagonist PN 200–110 in the absence and presence of cardiodepression. Br J Pharmacol 86:181–189

    Google Scholar 

  • Dole WP, Nuno DW (1986) Myocardial oxygen tension determines the degree and pressure range of coronary autoregulation. Circ Res 59:202–215

    Google Scholar 

  • Dubé GP, Baik YH, Schwartz A (1985) Effects of a novel calcium channel agonist dihydropyridine anologue, Bay k 8644, on pig coronary artery: Biphasic mechanical response and paradoxical potentiation of contraction by diltiazem and nimodipine. J Cardiovasc Pharmaco1 7:377–389

    Google Scholar 

  • Finet M, Godfraind T, Khoury G (1985) The positive inotropic action of the nifedipine analogue, Bay K 8644, in guinea-pig and rat isolated cardiac preparations. Br J Pharmacol 86:27–32

    Google Scholar 

  • Franckowiak G, Bechem M, Schramm M, Thomas G (1985) The optical isomers of the 1,4-dihydropyridine BAY K 8644 show opposite effects on Ca channels. Eur J Pharmacol 114:223–226

    Google Scholar 

  • Hess P, Lansman JB, Tsien RW (1984) Different modes of Ca channel gating behaviour favoured by dihydroyridine Ca agonists and antagonists. Nature 311:538–544

    Google Scholar 

  • Hof RP, RüCegg UT, Hof A, Vogel A (1985) Stereoselectivity at the calcium channel: Opposite action of the enantiomers of a 1,4-dihydropyridine. J Cardiovasc Pharmacol 7:689–693

    Google Scholar 

  • Hondeghem LM, Katzung BG (1984) Antiarrhythmic agents: The modulated receptor mechanism of action of sodium and calcium channel-blocking drugs. Ann Rev Pharmacol Toxicol 24:387–423

    Google Scholar 

  • Huis GA van, Sipkema P, Westerhof N (1985) Instantaneous and steady-state pressure-flow relations of the coronary system in the canine beating heart. Cardiovasc Res 19:121–131

    Google Scholar 

  • Ishii K, Taira N, Yanagisawa T (1985) Differential antagonism by Bay k 8644, a dihydropyridine calcium agonist, of the negative inotropic effects of nifedipine, verapamil, diltiazem and manganes ions in canine ventricular muscle. Br J Pharmacol 84:577–584

    Google Scholar 

  • Kiviluoma KT, Peuhkurinen KJ, Hassinen IF (1986) Role of cellular energy state and adenosine in the regulation of coronary flow during variation in contraction frequency in an isolated perfused heart. J Mol Cell Cardiol 18:1133–1142

    Google Scholar 

  • Lavanchy N, Martin J, Rossi A (1986) Effects of diltiazem on the energy metabolism of the isolated rat heart submitted to ischaemia: a 31P NMR study. J Mol Cell Cardiol 18:931–941

    Google Scholar 

  • Mikkelsen EO, Nyborg NCB (1986) Comparison of the effects of the vasoconstrictive dihydropyridines BAY K 8644 and CGP 28392 on isolated rat aorta: Different sensitivities to ultraviolet radiation. J Cardiovasc Pharmacol 8:476–482

    Google Scholar 

  • Miller WP, Shimamoto N, Nellis SH, Liedtke AJ (1987) Coronary hyperperfusion and myocardial metabolism in isolated and intact hearts. Am J Physiol 253:1271–1278

    Google Scholar 

  • Nayler WG, Ferrari F, Slade A (1980) Cardioprotective actions of calcium antagonists in myocardial anoxia and ischemia. In: Fleckenstein A, Roskam H (eds) Wirkung der Calcium-antagonisten. Springer, Berlin Heidelberg New York, pp 119–137

    Google Scholar 

  • Opie LH (1965) Coronary flow rate and perfusion pressure as determinants of mechanical function and oxidative metabolism of isolated perfused rat heart. J Physiol (Lond) 186:529–541

    Google Scholar 

  • Punt NC, Van Amsterdam FTM, Goddijn MM, Haas M, Zaagsma J (1988) Positive inotropic effects of calcium antagonists are not necessarily caused by partial calcium agonism. Naunyn-Schmiedeberg's Arch Pharmaco1 338:211–214

    Google Scholar 

  • Rubanyl GM, Schwartz A, Vanhoutte PM (1985) The calcium agonists BAY K 8644 and (+)-202,791 stimulate the release of endothelial relaxing factor from canine femoral arteries. Eur J Pharmacol 117:143–144

    Google Scholar 

  • Sarmiento JG, Shrikhande AV, Janis RA, Triggle DJ (1987) [3H]BAY K 8644, a 1,4-dihydropyridine Ca2+ channel activator: Characteristics of binding to high and low affinity sites in cardiac membranes. J Pharmacol Exp Ther 241:140–146

    Google Scholar 

  • Schramm M, Thomas G, Towart R, Franckowiak G (1983) Novel dihydropyridines with positive inotropic action through activation of Ca2+ channels. Nature 303:535–537

    Google Scholar 

  • Thomas G, Grosz R, Schramm M (1984) Calcium channel modulation: Ability to inhibit or promote calcium influx resides in the same dihydropyridine molecule. J Cardiovasc Pharmacol 6:1170–1176

    Google Scholar 

  • Vary TC, Reibel DK, Neely JR (1981) Control of energy metabolism on heart muscle. Ann Rev Physiol 43:419–430

    Google Scholar 

  • Watts JA, Whipple JP, Hatley AA (1987) A low concentration of nisoldipine reduces ischemic heart injury: Enhanced reflow and recovery of contractile function without energy preservation during ischemia. J Mol Cell Cardiol 19:809–817

    Google Scholar 

  • Wei XY, Luchowski EM, Rutledge A, Su CM, Triggle DJ (1986) Pharmacologic and radioligand binding analysis of the actions of 1,4-dihydropyridine activator-antagonist pairs in smooth muscle. J Pharmacol Exp Ther 239:144–153

    Google Scholar 

  • Wexler LF, Weinberg EO, Ingwall JS, Apstein CS (1986) Acute alterations in diastolic left ventricular chamber distensibility: Mechanistic differences between hypoxemia and ischemia in isolated perfused rabbit and rat hearts. Circ Res 59:515–528

    Google Scholar 

  • Williams JS, Baik YH, Koch WJ, Schwartz A (1987) A possible role for the endothelium in porcine coronary smooth muscle responses to dihydropyridine calcium channel modulators. J Pharmacol Exp Ther 241:379–386

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Additional information

Send offprint requests to J. Zaagsma at the above address

Rights and permissions

Reprints and permissions

About this article

Cite this article

van Amsterdam, F.T.M., Punt, N.C., Haas, M. et al. Stereoisomers of BAY K 8644 show opposite activities in the normal and ischaemic rat heart. Naunyn-Schmiedeberg's Arch Pharmacol 339, 647–652 (1989). https://doi.org/10.1007/BF00168657

Download citation

  • Received:

  • Accepted:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF00168657

Key words

Navigation