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1.
Bioorg Med Chem Lett ; 14(6): 1503-7, 2004 Mar 22.
Article in English | MEDLINE | ID: mdl-15006391

ABSTRACT

The synthesis and structure-activity relationships of 6-carboxy-2-isopropylamino-5,7-diarylcyclopenteno[1,2-b]pyridine class of ET(A) receptor selective antagonists were described. These derivatives were prepared from the optically active key intermediates (3, 4, 10, and 13). Optimization of the substituent at the 2-position of the bottom 4-methoxyphenyl ring of the lead compound 1 led to identification of 2-hydroxy-1-methylethoxy (2g and h), hydroxyalkyl (2i, m, and p), 3-methoxy-2-methylpropyl (2t and u), N-acetyl-N-methylaminomethyl (2v), and 2-(dimethylcarbamoyl)propyl (2w) derivatives that showed greater than 1000-fold selectivity for the ET(A) receptor over the ET(B) receptor with excellent binding affinity (IC(50)<0.10 nM). Further screening of these compounds by assessing the plasma exposures at 1 h, 4 h, and 8 h after oral administration (3 or 10 mg/kg) in rats led to identification of the hydroxymethyl (2i) and 3-methoxy-2-methylpropyl (2u) derivatives exhibiting good oral bioavailability in rats.


Subject(s)
Endothelin Receptor Antagonists , Pyridines/chemistry , Pyridines/metabolism , Receptors, Endothelin/metabolism , Animals , Humans , Protein Binding/physiology , Pyridines/blood , Rabbits , Rats , Receptors, Endothelin/blood , Structure-Activity Relationship
2.
Bioorg Med Chem Lett ; 12(21): 3041-5, 2002 Nov 04.
Article in English | MEDLINE | ID: mdl-12372497

ABSTRACT

Synthesis and structure-activity relationships of 2-substituted-5,7-diarylcyclopenteno[1,2-b]pyridine-6-carboxylic acids, a novel class of endothelin receptor antagonists, were described. Derivatization of a lead structure 1 (IC(50)=2.4nM, 170-fold selectivity) by incorporating a substituent such as an alkyl, alkoxy, alkylthio, or alkylamino group into the 2-position of the cyclopenteno[1,2-b]pyridine skeleton was achieved via the key intermediate 8. Introduction of an alkyl group led to the identification of potent ET(A)/ET(B) mixed receptor antagonists, a butyl (2d: IC(50)=0.21nM, 52-fold selectivity) and an isobutyl (2f: IC(50)=0.32nM, 26-fold selectivity) analogue. In contrast, installment of a primary amino group resulted in ET(A) selective antagonists, a propylamino 2p (IC(50)=0.12nM, 520-fold selectivity) and an isopropylamino 2q (IC(50)=0.10nM, 420-fold selectivity) analogue. These results suggested that a substituent at the 2-position of the 5,7-diarylcyclopenteno[1,2-b]pyridine-6-carboxylic acids played a key role in the binding affinity for both ET(A) and ET(B) receptors.


Subject(s)
Cyclopentanes/chemical synthesis , Cyclopentanes/pharmacology , Endothelin Receptor Antagonists , Pyridines/chemical synthesis , Pyridines/pharmacology , Binding, Competitive/drug effects , Humans , Indicators and Reagents , Receptor, Endothelin A , Receptor, Endothelin B , Recombinant Proteins , Structure-Activity Relationship
3.
Bioorg Med Chem ; 10(11): 3437-44, 2002 Nov.
Article in English | MEDLINE | ID: mdl-12213457

ABSTRACT

A convenient method for the synthesis of the title intermediate 4 was described. The key steps of this synthesis involved: (1) regioselective addition reaction of arylzinc reagent to quinolic anhydride in 42% isolated yield, (2) conversion of a ketoacid to an enone, which was achieved in 65% yield by intramolecular Knoevenagel reaction of beta-ketoester generated by condensation of an acid imidazolide with an ester enolate, followed by dehydration assisted with silica gel, and (3) stereoselective reduction of an allyl alcohol in 75% yield with zinc under acidic conditions. This synthesis enabled us to provide hundreds of grams of without chromatographic purification.


Subject(s)
Carboxylic Acids/chemical synthesis , Endothelin Receptor Antagonists , Pyridines/chemical synthesis , Catalysis , Indicators and Reagents , Keto Acids/chemistry , Solvents , Stereoisomerism , Zinc/chemistry
4.
Chem Pharm Bull (Tokyo) ; 50(8): 1066-72, 2002 Aug.
Article in English | MEDLINE | ID: mdl-12192138

ABSTRACT

An asymmetric synthesis of a selective endothelin A receptor antagonist 1b is described. Asymmetric conjugate addition of aryllithium derived from 18 to the chiral oxazoline 17 followed by hydrolysis afforded 15 in 96% ee via purification as (S)-(-)-1-phenylethylamine salt. Pd(OAc)(2)/dppf (1,1'-bis(diphenylphosphino)ferrocene) catalyzed carbonylation followed by chemoselective addition of aryllithium derived from 23 which gave ketone 24. Diastereoselective reduction of the ketone with catecholborane followed by concomitant activation of the resulting alcohol and cyclization gave the late intermediate 26. Introduction of amino moiety on the pyridine ring by imidoyl rearrangement followed by deprotection and purification by crystallization furnished the enantiomerically pure target molecule 1b in 8% overall yield from 16.


Subject(s)
Endothelin Receptor Antagonists , Technology, Pharmaceutical/methods , Lithium Compounds/chemical synthesis , Molecular Conformation , Oxazoles/chemical synthesis , Receptor, Endothelin A
5.
Bioorg Med Chem ; 10(8): 2461-70, 2002 Aug.
Article in English | MEDLINE | ID: mdl-12057635

ABSTRACT

Compounds (2-5) with a 6-carboxy-5,7-diarylcyclopentenopyridine skeleton were designed, synthesized, and identified as a new class of potent non-peptide endothelin receptor antagonists. The regio-isomer 2 was found to show potent inhibitory activity with an IC(50) value of 2.4 nM against (125)I-labeled ET-1 binding to human ET(A) receptors and a 170-fold selectivity for ET(A) over ET(B) receptors. Furthermore, 2 displayed more potent in vivo activity than did the indan-type compound 1 in a mouse ET-1 induced lethality model, suggesting the potential of 2 as a new lead structure. Derivatization on substituted phenyl groups at the 5- and 7-positions of 2 revealed that a 3,4-methylenedioxyphenyl group at the 5-position and a 4-methoxyphenyl group at the 7-position were optimal for binding affinity. Further derivatization of 2 by incorporating a substituent into the 2-position of the 4-methoxyphenyl group led to the identification of a more potent ET(A) selective antagonist 2p with an IC(50) value of 0.87 nM for ET(A) receptors and a 470-fold selectivity. In addition, 2p showed highly potent in vivo efficacy (AD(50): 0.04 mg/kg) in the lethality model.


Subject(s)
Endothelin Receptor Antagonists , Pyridines/chemical synthesis , Animals , Humans , Iliac Artery , Inhibitory Concentration 50 , Intestinal Absorption , Iodine Radioisotopes , Mice , Pyridines/pharmacokinetics , Pyridines/pharmacology , Rabbits , Rats , Receptor, Endothelin A , Receptor, Endothelin B , Structure-Activity Relationship , Survival Rate
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