Literature DB >> 8709127

Cardiovascular characterization of pyrrolo[2,1-d][1,5]benzothiazepine derivatives binding selectively to the peripheral-type benzodiazepine receptor (PBR): from dual PBR affinity and calcium antagonist activity to novel and selective calcium entry blockers.

G Campiani1, I Fiorini, M P De Filippis, S M Ciani, A Garofalo, V Nacci, G Giorgi, A Sega, M Botta, A Chiarini, R Budriesi, G Bruni, M R Romeo, C Manzoni, T Mennini.   

Abstract

The synthesis and cardiovascular characterization of a series of novel pyrrolo[2,1-d][1,5]-benzothiazepine derivatives (54-68) are described. Selective peripheral-type benzodiazepine receptor (PBR) ligands, such as PK 11195 and Ro 5-4864, have recently been found to possess low but significant inhibitory activity of L-type calcium channels, and this property is implicated in the cardiovascular effects observed with these compounds. In functional studies both PK 11195 (1-(2-chlorophenyl)-N-methyl-N-(1-methylpropyl)-3-isoquinolinecarboxa mide) and Ro 5-4864 (4'-chlorodiazepam) did not display selectivity between cardiac and vascular tissue. Therefore, several 7-(acyloxy)-6-arylpyrrolo[2,1-d][1,5]benzothiazepines, potent and selective peripheral-type benzodiazepine receptor ligands recently developed by us (3, 7-20), were subjected to calcium channel receptor binding assay. Some of these compounds showed an unexpected potency in displacing the binding of [3H]nitrendipine from L-type calcium channels, much higher than that reported for PK 11195 and Ro 5-4864 and equal to or higher than that of reference calcium antagonists such as verapamil and (+)-cis-diltiazem. Specifically, in rat cortex homogenate, our prototypic PBR ligand 7-acetoxy-6-(p-methoxyphenyl)pyrrolo[2,1-d][1,5]benzothiazepine (3) showed an IC50 equal to 0.13 nM for inhibition of [3H]nitrendipine binding. Furthermore, in functional studies this compound displayed a clear-cut selectivity for cardiac over vascular tissue. Comparison of calcium antagonist activity on guinea pig aorta strips with the negative inotropic activity, determined by using isolated guinea pig left atria, revealed that 3 displayed higher selectivity than the reference (+)-cis-diltiazem. Thus, the pyrrolobenzothiazepine 3 might represent a new tool for characterizing the relationship between the PBR and cardiac function. Furthermore, we have also investigated the structural dependence of binding to PBR and L-type calcium channels, and this study allowed us to identify a new class of potent calcium channel blockers selective for cardiac over vascular tissue, with no affinity for PBR. A number of structure-activity relationship trends have been identified, and a possible explanation is advanced in order to account for the observed differences in selectivity. Three structural features, namely, (i) the saturation of the C(6)-C(7) double bond, with a consequent higher molecular flexibility, (ii) the presence of a substituent in the benzofused ring, and (iii) a basic side chain at C-10 of the pyrrolobenzothiazepine ring system, were found to be responsible for potent L-type calcium channel antagonism and clear-cut selectivity for cardiac over vascular tissue. Among the synthesized compounds the pyrrolobenzothiazepine 62 was found to be the most promising selective calcium channel blocker. Additionally, the molecular structure determination of the key intermediate 48 by X-ray diffraction, molecular modeling, and NMR analysis is reported.

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Year:  1996        PMID: 8709127     DOI: 10.1021/jm960162z

Source DB:  PubMed          Journal:  J Med Chem        ISSN: 0022-2623            Impact factor:   7.446


  6 in total

1.  Synthesis of 1,5-benzothiazepine derivatives bearing 2-phenoxy-quinoline moiety via 1,3-diplolar cycloaddition reaction.

Authors:  Zhi-Qiang Dong; Fang-Ming Liu; Feng Xu; Zai-Liang Yuan
Journal:  Mol Divers       Date:  2011-08-12       Impact factor: 2.943

2.  Molecular modeling study of diltiazem mimics at L-type calcium channels.

Authors:  K J Schleifer; E Tot
Journal:  Pharm Res       Date:  1999-10       Impact factor: 4.200

3.  Development of a unique 3D interaction model of endogenous and synthetic peripheral benzodiazepine receptor ligands.

Authors:  N Cinone; H D Hötje; A Carotti
Journal:  J Comput Aided Mol Des       Date:  2000-11       Impact factor: 3.686

4.  Pharmacophore modelling of structurally unusual diltiazem mimics at L-type calcium channels.

Authors:  K J Schleifer; E Tot
Journal:  J Comput Aided Mol Des       Date:  2000-07       Impact factor: 3.686

5.  Effects of 4'-chlorodiazepam on cellular excitation-contraction coupling and ischaemia-reperfusion injury in rabbit heart.

Authors:  David A Brown; Miguel A Aon; Fadi G Akar; Ting Liu; Nicolas Sorarrain; Brian O'Rourke
Journal:  Cardiovasc Res       Date:  2008-02-26       Impact factor: 10.787

Review 6.  KV11.1, NaV1.5, and CaV1.2 Transporter Proteins as Antitarget for Drug Cardiotoxicity.

Authors:  Magdalena Kowalska; Jacek Nowaczyk; Alicja Nowaczyk
Journal:  Int J Mol Sci       Date:  2020-10-30       Impact factor: 5.923

  6 in total

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