Receptor binding thermodynamics is a powerful tool to gain deep insight, at the molecular level, of the events which occur during drug-receptor interactions. This chapter deals with the use of van’t Hoff analysis as a traditional method of thermodynamic studies to discover the enthalpic and entropic contributions of a drug to its receptor during binding equilibrium. A significant number of experimental studies addressed not only Gibbs energy but also enthalpy and entropy of ligand binding at different G-protein coupled receptors (GPCRs) and ligand-gated ion channels receptors (LGICRs). Here thermodynamic parameters, standard free energy (DG°), standard enthalpy (DH°) and standard entropy (DS°) of adenosine receptor binding equilibrium are r...
A thermodynamic analysis of the binding of a full agonist (N6-cyclopentyladenosine), a partial agoni...
PURPOSE: A thermodynamic analysis of the binding to rat cortex adenosine A1 receptor of N6-substitut...
The thermodn. parameters ΔGθ, ΔHθ, and ΔSθ of the binding equil. of 12 adenosine agonists and 11 xan...
Receptor binding thermodynamics is a powerful tool to gain deep insight, at the molecular level, of ...
Receptor binding thermodynamics is a powerful tool to gain deep insight, at the molecular level, of ...
This work deals with the study of the A3 adenosine receptors in the general scenario of all receptor...
The present commentary surveys the methods for obtaining the thermodynamic parameters of the drug-re...
Determination of drug-receptor binding constants (association, KA, or dissociation, KD = l/KA) by ra...
Drug-receptor binding thermodynamics has proved to be a valid tool for pharmacological and pharmaceu...
Simple determination of K(A) or K(D) values makes it possible to calculate the standard free energy ...
Only recently the binding equilibrium of a number of ligands at adenosine A1 and A2a receptors has b...
Only recently the binding equilibrium of a number of ligands at adenosine A1 and A2a receptors has b...
The thermodynamic parameters DeltaG , DeltaH and DeltaS of the binding equilibrium of six adenosine ...
The thermodynamic parameters (Delta G degrees, Delta H degrees, Delta S degrees) of the drug-recepto...
A thermodynamic analysis of the binding to rat cortex adenosine A1 receptors of 5'-deoxyribose-N6-cy...
A thermodynamic analysis of the binding of a full agonist (N6-cyclopentyladenosine), a partial agoni...
PURPOSE: A thermodynamic analysis of the binding to rat cortex adenosine A1 receptor of N6-substitut...
The thermodn. parameters ΔGθ, ΔHθ, and ΔSθ of the binding equil. of 12 adenosine agonists and 11 xan...
Receptor binding thermodynamics is a powerful tool to gain deep insight, at the molecular level, of ...
Receptor binding thermodynamics is a powerful tool to gain deep insight, at the molecular level, of ...
This work deals with the study of the A3 adenosine receptors in the general scenario of all receptor...
The present commentary surveys the methods for obtaining the thermodynamic parameters of the drug-re...
Determination of drug-receptor binding constants (association, KA, or dissociation, KD = l/KA) by ra...
Drug-receptor binding thermodynamics has proved to be a valid tool for pharmacological and pharmaceu...
Simple determination of K(A) or K(D) values makes it possible to calculate the standard free energy ...
Only recently the binding equilibrium of a number of ligands at adenosine A1 and A2a receptors has b...
Only recently the binding equilibrium of a number of ligands at adenosine A1 and A2a receptors has b...
The thermodynamic parameters DeltaG , DeltaH and DeltaS of the binding equilibrium of six adenosine ...
The thermodynamic parameters (Delta G degrees, Delta H degrees, Delta S degrees) of the drug-recepto...
A thermodynamic analysis of the binding to rat cortex adenosine A1 receptors of 5'-deoxyribose-N6-cy...
A thermodynamic analysis of the binding of a full agonist (N6-cyclopentyladenosine), a partial agoni...
PURPOSE: A thermodynamic analysis of the binding to rat cortex adenosine A1 receptor of N6-substitut...
The thermodn. parameters ΔGθ, ΔHθ, and ΔSθ of the binding equil. of 12 adenosine agonists and 11 xan...