Physiologically Based Pharmacokinetic Modeling of Transdermal Selegiline and Its Metabolites for the Evaluation of Disposition Differences between Healthy and Special Populations

Author:

Puttrevu Santosh Kumar,Arora Sumit,Polak SebastianORCID,Patel Nikunj Kumar

Abstract

A physiologically based pharmacokinetic (PBPK) model of selegiline (SEL), and its metabolites, was developed in silico to evaluate the disposition differences between healthy and special populations. SEL is metabolized to methamphetamine (MAP) and desmethyl selegiline (DMS) by several CYP enzymes. CYP2D6 metabolizes the conversion of MAP to amphetamine (AMP), while CYP2B6 and CYP3A4 predominantly mediate the conversion of DMS to AMP. The overall prediction error in simulated PK, using the developed PBPK model, was within 0.5–1.5-fold after intravenous and transdermal dosing in healthy and elderly populations. Simulation results generated in the special populations demonstrated that a decrease in cardiac output is a potential covariate that affects the SEL exposure in renally impaired (RI) and hepatic impaired (HI) subjects. A decrease in CYP2D6 levels increased the systemic exposure of MAP. DMS exposure increased due to a reduction in the abundance of CYP2B6 and CYP3A4 in RI and HI subjects. In addition, an increase in the exposure of the primary metabolites decreased the exposure of AMP. No significant difference between the adult and adolescent populations, in terms of PK, were observed. The current PBPK model predictions indicate that subjects with HI or RI may require closer clinical monitoring to identify any untoward effects associated with the administration of transdermal SEL patch.

Publisher

MDPI AG

Subject

Pharmaceutical Science

Reference75 articles.

1. Selegiline

2. A Double-Blind, Placebo-Controlled Trial of the Safety and Efficacy of Selegiline Transdermal System Without Dietary Restrictions in Patients With Major Depressive Disorder

3. Multi-Phase Multi-LAYER Mechanistic Dermal Absorption (MPML MechDermA) Model to Predict Local and Systemic Exposure of Dermally Applied Drug Products 1: Model Structure and Parameterization (Manuscript under Preparation);Patel,2020

4. The Selegiline Transdermal System (EMSAM): A therapeutic option for the treatment of major depressive disorder;Jessen;Pharm. Ther.,2008

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