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1.
J Pharmacol Exp Ther ; 324(2): 507-16, 2008 Feb.
Article in English | MEDLINE | ID: mdl-18025247

ABSTRACT

Acetyl CoA carboxylase (ACC) 2, which catalyzes the carboxylation of acetyl-CoA to form malonyl-CoA, has been identified as a potential target for type 2 diabetes and obesity. Small-molecule inhibitors of ACC2 would be expected to reduce de novo lipid synthesis and increase lipid oxidation. Treatment of ob/ob mice with compound A-908292 (S) ({(S)-3-[2-(4-isopropoxy-phenoxy)-thiazol-5-yl]-1-methyl-prop-2-ynyl}-carbamic acid methyl ester), a small-molecule inhibitor with an IC(50) of 23 nM against ACC2, resulted in a reduction of serum glucose and triglyceride levels. However, compound A-875400 (R) ({(R)-3-[2-(4-isopropoxy-phenoxy)-thiazol-5-yl]-1-methyl-prop-2-ynyl}-carbamic acid methyl ester), an inactive enantiomer of A-908292 (S) with approximately 50-fold less activity against ACC2, also caused a similar reduction in glucose and triglycerides, suggesting that the glucose-lowering effects in ob/ob mice may be mediated by other metabolic pathways independent of ACC2 inhibition. To characterize the pharmacological activity of these experimental compounds at a transcriptional level, rats were orally dosed for 3 days with either A-908292 (S) or A-875400 (R), and gene expression analysis was performed. Gene expression analysis of livers showed that treatment with A-908292 (S) or A-875400 (R) resulted in gene expression profiles highly similar to known peroxisome proliferator-activated receptor (PPAR)-alpha activators. The results suggest that, in vivo, both A-908292 (S) and A-875400 (R) stimulated the PPAR-alpha-dependent signaling pathway. These results were further supported by both an in vitro genomic evaluation using rat hepatocytes and immunohistochemical evaluation using 70-kDa peroxisomal membrane protein. Overall, the gene expression analysis suggests a plausible mechanism for the similar pharmacological findings with active and inactive enantiomers of an ACC2 inhibitor.


Subject(s)
Acetyl-CoA Carboxylase/antagonists & inhibitors , Gene Expression Regulation, Enzymologic/physiology , PPAR alpha/metabolism , Signal Transduction/physiology , Acetyl-CoA Carboxylase/metabolism , Animals , Enzyme Inhibitors/pharmacology , Gene Expression Regulation, Enzymologic/drug effects , Hepatocytes , Humans , Mice , Mice, Obese , Rats , Rats, Sprague-Dawley , Signal Transduction/drug effects
2.
Bioorg Med Chem Lett ; 14(9): 2047-50, 2004 May 03.
Article in English | MEDLINE | ID: mdl-15080976

ABSTRACT

Biaryl amides derived from a reported series of ureas 1 were evaluated and found to be potent human glucagon receptor antagonists. The benzofuran analogue 6i was administered in Sprague-Dawley rats and blocked the effects of an exogenous glucagon challenge.


Subject(s)
Amides/pharmacology , Receptors, Glucagon/antagonists & inhibitors , Amides/chemistry , Animals , Haplorhini , Humans , Mice , Rats , Rats, Sprague-Dawley
3.
Clin Sci (Lond) ; 103 Suppl 48: 112S-117S, 2002 Aug.
Article in English | MEDLINE | ID: mdl-12193067

ABSTRACT

Endothelins (ETs), 21-amino-acid peptides involved in the pathogenesis of various diseases, bind to ET(A) and ET(B) receptors to initiate their effects. Based on the same core structure, we have developed four small-molecule ET receptor antagonists, ABT-627 (atrasentan), ABT-546, A-182086 and A-192621, which exhibit differences in selectivity for ET(A) and ET(B) receptors. In this report, we compare the efficacy, potency and pharmacokinetic properties of these four antagonists, including potency in inhibiting ET-1- or Sarafotoxin 6c-induced vessel constriction in isolated arteries and efficacy in antagonizing ET-1-, big ET-1- or Sarafotoxin 6c-induced pressor responses in rats.


Subject(s)
Endothelin Receptor Antagonists , Endothelium, Vascular/drug effects , Muscle, Smooth, Vascular/drug effects , Pyrrolidines/pharmacology , Vasodilator Agents/pharmacology , Analysis of Variance , Animals , Aorta , Atrasentan , Dogs , Dose-Response Relationship, Drug , Endothelin-1/pharmacology , Female , Humans , In Vitro Techniques , Macaca fascicularis , Male , Pyrrolidines/pharmacokinetics , Rabbits , Rats , Rats, Sprague-Dawley , Receptor, Endothelin A , Receptor, Endothelin B , Sulfonamides/pharmacokinetics , Sulfonamides/pharmacology , Vasoconstrictor Agents/pharmacology , Vasodilator Agents/pharmacokinetics , Viper Venoms/pharmacology
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