Cardioprotective properties of citicoline against hyperthyroidism-induced reperfusion damage in rat hearts

Author:

Hernández-Esquivel Luz1,Pavón Natalia1,Buelna-Chontal Mabel2,González-Pacheco Héctor3,Belmont Javier1,Chávez Edmundo1

Affiliation:

1. Departamento de Bioquímica, Instituto Nacional de Cardiología Ignacio Chávez, Juan Badiano N°1, Col Sección XVI, CP 14080 Tlalpan D.F. México.

2. Departamento de Biomedicina Cardiovascular, Instituto Nacional de Cardiología Ignacio Chávez, Juan Badiano N°1, Col Sección XVI, CP 14080 Tlalpan D.F. México.

3. Unidad Coronaria, Instituto Nacional de Cardiología Ignacio Chávez, Juan Badiano N°1, Col Sección XVI, CP 14080 Tlalpan D.F. México.

Abstract

Hyperthyroidism represents an increased risk factor for cardiovascular morbidity, especially when the heart is subjected to an ischemia/reperfusion process. The aim of this study was to explore the possible protective effect of the nucleotide citicoline on the susceptibility of hyperthyroid rat hearts to undergo reperfusion-induced damage, which is associated with mitochondrial dysfunction. Hence, we analyzed the protective effect of citicoline on the electrical behavior and on the mitochondrial function in rat hearts. Hyperthyroidism was established after a daily i.p. injection of triiodothyronine (at 2 mg/kg of body weight) during 5 days. Thereafter, citicoline was administered i.p. (at 125 mg/kg of body weight) for 5 days. In hyperthyroid rat hearts, citicoline protected against reperfusion-induced ventricular arrhythmias. Moreover, citicoline maintained the accumulation of mitochondrial Ca2+, allowing mitochondria to reach a high transmembrane electric gradient that protected against the release of cytochrome c. It also preserved the activity of the enzyme aconitase that inhibited the release of cytokines. The protection also included the inhibition of oxidative stress-induced mDNA disruption. We conclude that citicoline protects against the reperfusion damage that is found in the hyperthyroid myocardium. This effect might be due to its inhibitory action on the permeability transition in mitochondria.

Publisher

Canadian Science Publishing

Subject

Cell Biology,Molecular Biology,Biochemistry

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