Literature DB >> 11564132

Influence of trimetazidine on the synthesis of complex lipids in the heart and other target organs.

E Sentex1, C Héliès-Toussaint, D Rousseau, A Lucien, E Ferrary, A Grynberg.   

Abstract

Trimetazidine exerts antianginal properties at the cellular level, without haemodynamic effect in clinical and experimental conditions. This cytoprotection was attributed to a decreased utilization of fatty acids for energy production, balanced by an increased incorporation in structural lipids. This study evaluated the influence of Trimetazidine on complex lipid synthesis from [2-(3)H] glycerol, in ventricular myocytes, isolated rat hearts and in vivo in the myocardium and several other tissues. In cardiomyocytes, Trimetazidine increased the synthesis of phosphatidyl-choline (+ 80%), phosphatidyl-ethanolamine (+ 210%), phosphatidyl-inositol (+ 250%) and cardiolipid (+ 100%). The common precursor diacylglycerol was also increased (+ 40%) whereas triacylglycerol was decreased (-70%). Similar results were obtained in isolated hearts with 10 microm Trimetazidine (phosphatidyl-choline + 60%, phosphatidyl-ethanolamine + 60%, phosphatidyl-inositol + 100% and cardiolipid + 50%), the last two phospholipids containing 85% of the radioactivity. At 1 microm, Trimetazidine still stimulated the phospholipid synthesis although the difference was found significant only in phosphatidyl-inositol and cardiolipid. In vivo studies (10 mg/kg per day for 7 days and 5 mg/kg, i.p. before the experiment) revealed significant changes in the intracellular lipid biosynthesis, with increased labelling of phospholipids and reduced incorporation of glycerol in nonphosphorous lipids. Trimetazidine increased the glycerol uptake from plasma to the other tissues (liver, cochlea, retina), resulting in an altered lipid synthesis. The anti-anginal properties of Trimetazidine involve a reorganisation of the glycerol-based lipid synthesis balance in cardiomyocytes, associated with an increased uptake of plasma glycerol that may contribute to explain the pharmacological properties reported in other organs.

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Year:  2001        PMID: 11564132     DOI: 10.1046/j.1472-8206.2001.00031.x

Source DB:  PubMed          Journal:  Fundam Clin Pharmacol        ISSN: 0767-3981            Impact factor:   2.748


  2 in total

1.  Therapeutic inhibition of fatty acid oxidation in right ventricular hypertrophy: exploiting Randle's cycle.

Authors:  Yong-Hu Fang; Lin Piao; Zhigang Hong; Peter T Toth; Glenn Marsboom; Peter Bache-Wiig; Jalees Rehman; Stephen L Archer
Journal:  J Mol Med (Berl)       Date:  2011-08-28       Impact factor: 4.599

2.  Modulating the metabolism by trimetazidine enhances myoblast differentiation and promotes myogenesis in cachectic tumor-bearing c26 mice.

Authors:  Lucia Gatta; Laura Vitiello; Stefania Gorini; Sergio Chiandotto; Paola Costelli; Anna Maria Giammarioli; Walter Malorni; Giuseppe Rosano; Elisabetta Ferraro
Journal:  Oncotarget       Date:  2017-12-08
  2 in total

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