Literature DB >> 26325241

Modulation of mitochondrial respiratory function and ROS production by novel benzopyran analogues.

Alexandra Petruş1, Oana M Duicu2, Adrian Sturza2, Lavinia Noveanu2, Loránd Kiss3, Maria Dănilă2, István Baczkó1, Danina M Muntean2, Norbert Jost2.   

Abstract

A substantial body of evidence indicates that pharmacological activation of mitochondrial ATP-sensitive potassium channels (mKATP) in the heart is protective in conditions associated with ischemia/reperfusion injury. Several mechanisms have been postulated to be responsible for cardioprotection, including the modulation of mitochondrial respiratory function. The aim of the present study was to characterize the dose-dependent effects of novel synthetic benzopyran analogues, derived from a BMS-191095, a selective mKATP opener, on mitochondrial respiration and reactive oxygen species (ROS) production in isolated rat heart mitochondria. Mitochondrial respiratory function was assessed by high-resolution respirometry, and H2O2 production was measured by the Amplex Red fluorescence assay. Four compounds, namely KL-1487, KL-1492, KL-1495, and KL-1507, applied in increasing concentrations (50, 75, 100, and 150 μmol/L, respectively) were investigated. When added in the last two concentrations, all compounds significantly increased State 2 and 4 respiratory rates, an effect that was not abolished by 5-hydroxydecanoate (5-HD, 100 μmol/L), the classic mKATP inhibitor. The highest concentration also elicited an important decrease of the oxidative phosphorylation in a K(+) independent manner. Both concentrations of 100 and 150 μmol/L for KL-1487, KL-1492, and KL-1495, and the concentration of 150 μmol/L for KL-1507, respectively, mitigated the mitochondrial H2O2 release. In isolated rat heart mitochondria, the novel benzopyran analogues act as protonophoric uncouplers of oxidative phosphorylation and decrease the generation of reactive oxygen species in a dose-dependent manner.

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Keywords:  analogues du benzopyrane; benzopyran analogues; effet découplant; hydrogen peroxide; mitochondries du cœur de rat; peroxyde d’hydrogène; protonophores; rat heart mitochondria; uncoupling

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Year:  2015        PMID: 26325241     DOI: 10.1139/cjpp-2015-0041

Source DB:  PubMed          Journal:  Can J Physiol Pharmacol        ISSN: 0008-4212            Impact factor:   2.273


  4 in total

Review 1.  Mitochondrial redox status as a target for cardiovascular disease.

Authors:  James W Walters; Deborah Amos; Kristeena Ray; Nalini Santanam
Journal:  Curr Opin Pharmacol       Date:  2016-02-16       Impact factor: 5.547

2.  Oral zero-valent-molybdenum nanodots for inflammatory bowel disease therapy.

Authors:  Chen Zhang; Han Wang; Xinhui Yang; Zi Fu; Xiuru Ji; Yifan Shi; Jie Zhong; Weiguo Hu; Youqiong Ye; Zhengting Wang; Dalong Ni
Journal:  Sci Adv       Date:  2022-09-16       Impact factor: 14.957

3.  Metformin alleviates monoamine oxidase-related vascular oxidative stress and endothelial dysfunction in rats with diet-induced obesity.

Authors:  Loredana N Ionică; Laura Gaiță; Anca M Bînă; Raluca Soșdean; Rodica Lighezan; Alexandra Sima; Daniel Malița; Octavian M Crețu; Ovidiu Burlacu; Danina M Muntean; Adrian Sturza
Journal:  Mol Cell Biochem       Date:  2021-07-03       Impact factor: 3.396

Review 4.  The Role of Mitochondrial Reactive Oxygen Species in Cardiovascular Injury and Protective Strategies.

Authors:  Danina M Muntean; Adrian Sturza; Maria D Dănilă; Claudia Borza; Oana M Duicu; Cristian Mornoș
Journal:  Oxid Med Cell Longev       Date:  2016-04-21       Impact factor: 6.543

  4 in total

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