Back to Search Start Over

In Vitro Pharmacokinetic Behavior of Antiviral 3-Amidinophenylalanine Derivatives in Rat, Dog and Monkey Hepatocytes.

Authors :
Lányi K
Monostory K
Steinmetzer T
Jerzsele Á
Pászti-Gere E
Source :
Biomedicines [Biomedicines] 2023 Feb 23; Vol. 11 (3). Date of Electronic Publication: 2023 Feb 23.
Publication Year :
2023

Abstract

Type II transmembrane serine proteases represent pharmacological targets for blocking entry and spread of influenza or coronaviruses. In this study, the depletion rates of the 3-amidinophenylalanine (3-APhA)-derived matriptase/TMPRSS2 inhibitors MI-463, MI-472, MI-485 or MI-1900 were determined by LC-MS/MS measurements over a period of 300 min using suspensions of rat, dog and cynomolgus monkey primary hepatocytes. From these in vitro pharmacokinetic (PK) experiments, intrinsic clearance values (Cl <subscript>int</subscript> ) were evaluated, and in vivo pharmacokinetic parameters (hepatic clearance, hepatic extraction ratio and bioavailability) were predicted. It was found that rat hepatocytes were the most active in the metabolism of 3-APhA derivatives (Cl <subscript>int</subscript> 31.9-37.8 mL/min/kg), whereas dog and monkey cells displayed somewhat lower clearance of these compounds (Cl <subscript>int</subscript> 6.6-26.7 mL/min/kg). These data support elucidation of important PK properties of anti-TMPRSS2/anti-matriptase 3-APhAs using mammalian hepatocyte models and thus contribute to the optimization of lead compounds.

Details

Language :
English
ISSN :
2227-9059
Volume :
11
Issue :
3
Database :
MEDLINE
Journal :
Biomedicines
Publication Type :
Academic Journal
Accession number :
36979660
Full Text :
https://doi.org/10.3390/biomedicines11030682