Effect of structurally constrained oxime–ether linker on PPAR subtype selectivity: Discovery of a novel and potent series of PPAR-pan agonists

Bioorganic & Medicinal Chemistry
2011.0

Abstract

A novel series of thaizole and oxazole containing phenoxy acetic acid derivatives is reported as PPAR-pan agonists. Incorporation of structurally constrained oxime-ether based linker in the chemotype of a potent PPARδ selective agonist GW-501516 was adapted as designing strategy. In vitro, selected test compounds 12a, 12c, 17a and 18a showed PPAR-pan agonists activities and among these four compounds tested, 12a emerged as highly potent and efficacious compound, while 17a exhibited moderate and balanced PPAR-pan agonistic activity. In vivo, selected test compounds 12a and 17a exhibited significant anti-hyperglycemic and anti-hyperlipidemic activities in relevant animal models. These results support our hypothesis that the introduction of structurally constrained oxime-ether linker between lipophilic tail and acidic head plays an important role in modulating subtype selectivity and subsequently led to the discovery of potent PPAR-pan agonists.

Knowledge Graph

Similar Paper

Effect of structurally constrained oxime–ether linker on PPAR subtype selectivity: Discovery of a novel and potent series of PPAR-pan agonists
Bioorganic & Medicinal Chemistry 2011.0
Indanylacetic Acid Derivatives Carrying 4-Thiazolyl-phenoxy Tail Groups, a New Class of Potent PPAR α/γ/δ Pan Agonists:  Synthesis, Structure−Activity Relationship, and In Vivo Efficacy
Journal of Medicinal Chemistry 2007.0
Design, Synthesis, and Biological Evaluation of Novel Constrained meta-Substituted Phenyl Propanoic Acids as Peroxisome Proliferator-Activated Receptor α and γ Dual Agonists
Journal of Medicinal Chemistry 2008.0
Modulation of PPAR subtype selectivity. Part 2: Transforming PPARα/γ dual agonist into α selective PPAR agonist through bioisosteric modification
Bioorganic & Medicinal Chemistry Letters 2011.0
Novel Phenyldiazenyl Fibrate Analogues as PPAR α/γ/δ Pan-Agonists for the Amelioration of Metabolic Syndrome
ACS Medicinal Chemistry Letters 2019.0
Design and synthesis of novel oxazole containing 1,3-Dioxane-2-carboxylic acid derivatives as PPAR α/γ dual agonists
Bioorganic & Medicinal Chemistry 2008.0
Design and synthesis of oxime ethers of α-acyl-β-phenylpropanoic acids as PPAR dual agonists
Bioorganic & Medicinal Chemistry Letters 2007.0
Revisiting glitazars: Thiophene substituted oxazole containing α-ethoxy phenylpropanoic acid derivatives as highly potent PPARα/γ dual agonists devoid of adverse effects in rodents
Bioorganic & Medicinal Chemistry Letters 2011.0
Design, synthesis and evaluation of novel zwitterionic compounds as PPARα/γ dual agonists (1)
Bioorganic & Medicinal Chemistry Letters 2012.0
Design and Synthesis of α-Aryloxyphenylacetic Acid Derivatives:  A Novel Class of PPARα/γ Dual Agonists with Potent Antihyperglycemic and Lipid Modulating Activity
Journal of Medicinal Chemistry 2005.0