Literature DB >> 24055044

Triphenylphosphonium salts of 1,2,4-benzothiadiazine 1,1-dioxides related to diazoxide targeting mitochondrial ATP-sensitive potassium channels.

Céline Constant-Urban1, Mounia Charif, Eric Goffin, Jean-Claude Van Heugen, Benaïssa Elmoualij, Patrice Chiap, Ange Mouithys-Mickalad, Didier Serteyn, Philippe Lebrun, Bernard Pirotte, Pascal De Tullio.   

Abstract

The present work aims at identifying new ion channel modulators able to target mitochondrial ATP-sensitive potassium channels (mitoKATP channels). An innovative approach should consist in fixing a cationic and hydrophobic triphenylphosphonium fragment on the structure of known KATP channel openers. Such phosphonium salts are expected to cross the biological membranes and to accumulate into mitochondria. Previous works revealed that the presence of an (R)-1-hydroxy-2-propylamino chain at the 3-position of 4H-1,2,4-benzothiadiazine 1,1-dioxides KATP channel openers increased, in most cases, the selectivity towards the pancreatic-type (SUR1/Kir6.2) KATP channel. In order to target cardiac mitoKATP channels, we decided to introduce a triphenylphosphonium group through an ester link on the SUR1-selective (R)-7-chloro-3-(1-hydroxy-2-propyl)amino-4H-1,2,4-benzothiadiazine 1,1-dioxide. The new compounds were found to preserve an inhibitory activity on insulin secretion (SUR1-type KATP channel openers) while no clear demonstration of an impact on mitochondria from cardiomyocytes (measurement of oxygen consumption, respiratory parameters and ATP production on H9C2 cells) was observed. However, the most active (inhibition of insulin release) compound 17 was found to penetrate the cardiac cells and to reach mitochondria.
Copyright © 2013 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  ATP; ATP-sensitive potassium channels; Benzothiadiazine dioxides; DCC; DCVC; DMSO; Diazoxide; HOBt; Kir; Mitochondria; N,N′-dicyclohexylcarbodiimide; N-hydroxysuccinimide; NHS; SUR; TMS; Triphenylphosphonium salts; adenosine triphosphate; dimethylsulfoxide; dry column vacuum chromatography; hydroxybenzotriazole; inwardly rectifying potassium channel; mitoK(ATP) channel; mitochondrial ATP-sensitive potassium channel; sulfonylurea receptor; tetramethylsilane

Mesh:

Substances:

Year:  2013        PMID: 24055044     DOI: 10.1016/j.bmcl.2013.08.091

Source DB:  PubMed          Journal:  Bioorg Med Chem Lett        ISSN: 0960-894X            Impact factor:   2.823


  3 in total

1.  AP39, a novel mitochondria-targeted hydrogen sulfide donor, stimulates cellular bioenergetics, exerts cytoprotective effects and protects against the loss of mitochondrial DNA integrity in oxidatively stressed endothelial cells in vitro.

Authors:  Bartosz Szczesny; Katalin Módis; Kazunori Yanagi; Ciro Coletta; Sophie Le Trionnaire; Alexis Perry; Mark E Wood; Matthew Whiteman; Csaba Szabo
Journal:  Nitric Oxide       Date:  2014-04-19       Impact factor: 4.427

2.  AP39, a Mitochondria-Targeted Hydrogen Sulfide Donor, Supports Cellular Bioenergetics and Protects against Alzheimer's Disease by Preserving Mitochondrial Function in APP/PS1 Mice and Neurons.

Authors:  Feng-Li Zhao; Fang Fang; Pei-feng Qiao; Ning Yan; Dan Gao; Yong Yan
Journal:  Oxid Med Cell Longev       Date:  2016-01-31       Impact factor: 6.543

3.  Diazoxide and Exercise Enhance Muscle Contraction during Obesity by Decreasing ROS Levels, Lipid Peroxidation, and Improving Glutathione Redox Status.

Authors:  Mariana Gómez-Barroso; Koré M Moreno-Calderón; Elizabeth Sánchez-Duarte; Christian Cortés-Rojo; Alfredo Saavedra-Molina; Alain R Rodríguez-Orozco; Rocío Montoya-Pérez
Journal:  Antioxidants (Basel)       Date:  2020-12-04
  3 in total

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