Modulation of Mitochondrial Quality Control Processes by BGP-15 in Oxidative Stress Scenarios: From Cell Culture to Heart Failure

Author:

Horvath Orsolya12ORCID,Ordog Katalin12ORCID,Bruszt Kitti12ORCID,Kalman Nikoletta3ORCID,Kovacs Dominika3ORCID,Radnai Balazs3ORCID,Gallyas Ferenc234ORCID,Toth Kalman12ORCID,Halmosi Robert12ORCID,Deres Laszlo124ORCID

Affiliation:

1. 1st Department of Medicine, University of Pecs, Medical School, Pecs, Hungary

2. Szentágothai Research Centre, University of Pecs, Pecs, Hungary

3. Department of Biochemistry and Medical Chemistry, University of Pecs, Medical School, Pecs, Hungary

4. HAS-UP Nuclear-Mitochondrial Interactions Research Group, 1245 Budapest, Hungary

Abstract

Heart failure (HF) is a complex chronic clinical disease characterized by among others the damage of the mitochondrial network. The disruption of the mitochondrial quality control and the imbalance in fusion-fission processes lead to a lack of energy supply and, finally, to cell death. BGP-15 (O-[3-piperidino-2-hydroxy-1-propyl]-nicotinic acid amidoxime dihydrochloride) is an insulin sensitizer molecule and has a cytoprotective effect in a wide variety of experimental models. In our recent work, we aimed to clarify the mitochondrial protective effects of BGP-15 in a hypertension-induced heart failure model and “in vitro.” Spontaneously hypertensive rats (SHRs) received BGP-15 or placebo for 18 weeks. BGP-15 treatment preserved the normal mitochondrial ultrastructure and enhanced the mitochondrial fusion. Neonatal rat cardiomyocytes (NRCMs) were stressed by hydrogen-peroxide. BGP-15 treatment inhibited the mitochondrial fission processes, promoted mitochondrial fusion, maintained the integrity of the mitochondrial genome, and moreover enhanced the de novo biogenesis of the mitochondria. As a result of these effects, BGP-15 treatment also supports the maintenance of mitochondrial function through the preservation of the mitochondrial structure during hydrogen peroxide-induced oxidative stress as well as in an “in vivo” heart failure model. It offers the possibility, which pharmacological modulation of mitochondrial quality control under oxidative stress could be a novel therapeutic approach in heart failure.

Funder

Pécsi Tudományegyetem

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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