Quantitative structure activity analysis of 2-alkoxydihydrocinnamates as PPARalpha/gamma dual agonist.

P Manoj Kumar, R Hemalatha, S C Mahajan, C Karthikeyan, N S Hari Narayana Moorthy, Piyush Trivedi

Molecular Modeling Study group, Mahakal Institute of Pharmaceutical Studies, Ujjain -456664, Madhya Pradesh, India.

Journal Article: Medicinal Chemistry (impact factor: 1.64). 06/2008; 4(3):273-7.

Abstract

To optimize the physiochemical properties of 2-alkoxydihydrocinnamates as PPARalpha/gamma dual agonist, a quantitative structure activity relationship, Hansch approach was made using combination of various thermodynamic, electronic and spatial descriptors. Several regression expressions are obtained using multiple linear regression analysis. The best QSAR model is further validated by leave-one-out cross validation method. Analyses of results from the present QSAR study suggest that for favorable dual PPARalpha/gamma agonist activity electronic property of the substituents in hydrophobic tail phenyl ring plays a key role. The contribution of Hammett constant and dipole moment in the models deduced the importance of electron withdrawing substituents for dual activity. Additionally the study also indicates that bulky substituents in head acid moiety not confer selectivity towards the PPAR activity. Thus the QSAR study brings important structural insight to aid the design of dual PPARalpha/gamma receptor agonist.

Source: PubMed

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Keywords

dipole moment
 
dual activity
 
dual PPARalpha/gamma receptor agonist
 
electronic
 
favorable dual PPARalpha/gamma agonist activity electronic property
 
Hammett constant
 
Hansch approach
 
head acid moiety
 
hydrophobic tail phenyl ring
 
multiple linear regression analysis
 
physiochemical properties
 
PPAR activity
 
PPARalpha/gamma dual agonist
 
present QSAR study
 
QSAR study
 
quantitative structure activity relationship
 
spatial descriptors
 
structural insight
 
validation method
 
various thermodynamic