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Department of Pharmacology

 
Author(s): 
Viejo, L, Rubio-Alarcón, M, Arribas, RL, Moreno-Castro, M, Pérez-Marín, R, Braun-Cornejo, M, Estrada-Valencia, M, de Los Ríos, C
Abstract: 

In excitable cells, mitochondria play a key role in the regulation of the cytosolic Ca2+ levels. A dysregulation of the mitochondrial Ca2+ buffering machinery derives in serious pathologies, where neurodegenerative diseases highlight. Since the mitochondrial Na+/Ca2+ exchanger (NCLX) is the principal efflux pathway of Ca2+ to the cytosol, drugs capable of blocking NCLX have been proposed to act as neuroprotectants in neuronal damage scenarios exacerbated by Ca2+ overload. In our search of optimized NCLX blockers with augmented drug-likeness, we herein describe the synthesis and pharmacological characterization of new benzothiazepines analogues to the first-in-class NCLX blocker CGP37157 and its further derivative ITH12575, synthesized by our research group. As a result, we found two new compounds with an increased neuroprotective activity, neuronal Ca2+ regulatory activity and improved drug-likeness and pharmacokinetic properties, such as clog p or brain permeability, measured by PAMPA experiments.

Publication ID: 
1444038
Published date: 
24 July 2021
Publication source: 
pubmed
Publication type: 
Journal articles
Journal name: 
Molecules
Publication volume: 
26
Publisher: 
Parent title: 
Edition: 
Publication number: