Selective inhibitory action of Biginelli-type dihydropyrimidines on depolarization-induced arterial smooth muscle contraction

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Abstract

Objectives Dihydropyridine calcium channel blockers have some disadvantages such as light sensitivity and relatively short plasma half-lives. Stability of dihydropyrimidines analogues could be of advantage, yet they remain less well characterized. We aimed to test four newly synthesized Biginelli-type dihydropyrimidines for their calcium channel blocking activity on rat isolated aorta. Methods Dihydropyrimidines (compounds A-D) were prepared by the Biginelli-like three-component condensation of benzaldehydes with urea/thiourea and dimethyl or diethyl acetone-1,3-dicarboxylate, and their physicochemical properties and effects on depolarization-induced and noradrenaline-induced contractions of rat isolated aorta were evaluated. Key findings Dihydropyrimidines A and C blocked KCl-induced contraction only weakly (-log(IC50) = 5.03 and 3.73, respectively), while dihydropyrimidine D (-log(IC50) = 7.03) was almost as potent as nifedipine (-log(IC50) = 8.14). Washout experiments revealed that dihydropyrimidine D may bind strongly to the L-type calcium channel or remains bound to membrane. All tested dihydropyrimidines only marginally inhibited noradrenaline-induced contractions of rat isolated aorta (20% reduction of noradrenaline E max), indicating a more selective action on L-type calcium channel than nifedipine with 75% inhibition of noradrenaline E max at 10 -4m nifedipine). Conclusions Compounds A and, particularly, D are potent calcium channel blockers in vitro, with a better selectivity in inhibiting depolarization-induced arterial smooth muscle contraction than nifedipine. © 2012 The Authors. JPP © 2012 Royal Pharmaceutical Society.

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Cernecka, H., Veizerova, L., Mensikova, L., Svetlik, J., & Krenek, P. (2012). Selective inhibitory action of Biginelli-type dihydropyrimidines on depolarization-induced arterial smooth muscle contraction. Journal of Pharmacy and Pharmacology, 64(5), 735–741. https://doi.org/10.1111/j.2042-7158.2012.01466.x

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