OBJECTIVES: To assess the ability of a previously developed hybrid physiology-based pharmacokinetic-pharmacodynamic (PBPKPD) model in rats to predict the dopamine D2 receptor occupancy (D2RO) in human striatum following administration of antipsychotic drugs.METHODS: A hybrid PBPKPD model, previously developed using information on plasma concentrations, brain exposure and D2RO in rats, was used as the basis for the prediction of D2RO in human. The rat pharmacokinetic and brain physiology parameters were substituted with human population pharmacokinetic parameters and human physiological information. To predict the passive transport across the human blood-brain barrier, apparent permeability values were scaled based on rat and human brain end...
Objectives: Dopamine D2 receptor occupancy (D2RO) is the major determinant of efficacy and safety in...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
Translationeel onderzoek in de farmaceutische industrie is gericht op het voorspellen van de effecte...
OBJECTIVES: To assess the ability of a previously developed hybrid physiology-based pharmacokinetic-...
OBJECTIVES: To assess the ability of a previously developed hybrid physiology-based pharmacokinetic-...
OBJECTIVES: To assess the ability of a previously developed hybrid physiology-based pharmacokinetic-...
Objectives: A hybrid physiology-based pharmacokinetic and pharmacodynamic model (PBPKPD) was used to...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
Objectives: To link the brain dopamine D2 receptor occupancy (D2RO) of antipsychotic drugs with clin...
Objectives: To link the brain dopamine D2 receptor occupancy (D2RO) of antipsychotic drugs with clin...
Objectives: Dopamine D2 receptor occupancy (D2RO) is the major determinant of efficacy and safety in...
Objectives: Dopamine D2 receptor occupancy (D2RO) is the major determinant of efficacy and safety in...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
Translationeel onderzoek in de farmaceutische industrie is gericht op het voorspellen van de effecte...
OBJECTIVES: To assess the ability of a previously developed hybrid physiology-based pharmacokinetic-...
OBJECTIVES: To assess the ability of a previously developed hybrid physiology-based pharmacokinetic-...
OBJECTIVES: To assess the ability of a previously developed hybrid physiology-based pharmacokinetic-...
Objectives: A hybrid physiology-based pharmacokinetic and pharmacodynamic model (PBPKPD) was used to...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
Objectives: To link the brain dopamine D2 receptor occupancy (D2RO) of antipsychotic drugs with clin...
Objectives: To link the brain dopamine D2 receptor occupancy (D2RO) of antipsychotic drugs with clin...
Objectives: Dopamine D2 receptor occupancy (D2RO) is the major determinant of efficacy and safety in...
Objectives: Dopamine D2 receptor occupancy (D2RO) is the major determinant of efficacy and safety in...
A mechanism-based PK-PD model was developed to predict the time course of dopamine D-2 receptor occu...
Translationeel onderzoek in de farmaceutische industrie is gericht op het voorspellen van de effecte...