Literature DB >> 7840294

Propionyl-L-carnitine-mediated improvement in contractile function of rat hearts oxidizing acetoacetate.

R R Russell1, J I Mommessin, H Taegtmeyer.   

Abstract

Prior evidence has suggested that propionyl-L-carnitine improves function in ischemic hearts by providing carnitine for dissipation of acyl-CoA derivatives and propionate for enrichment of the citric acid cycle. Because contractile failure in hearts oxidizing ketone bodies is due to sequestration of free coenzyme A, which can be reversed by the addition of anaplerotic substrates that enrich the citric acid cycle, experiments were performed to determine whether the addition of propionyl-L-carnitine (2 mM) can improve performance in working rat hearts utilizing acetoacetate (7.5 mM). Whereas the addition of propionyl-L-carnitine to acetoacetate resulted in a sustained improvement in the work output of the heart, the addition of propionate (2 mM) or L-carnitine (2 mM) alone to acetoacetate had negligible effects on contractile function. Propionyl-L-carnitine increased the uptake of acetoacetate by 130%, whereas beta-hydroxybutyrate release was minimal and unchanged compared with other groups. These observations show that rates of acetoacetate oxidation are increased commensurate with increased contractile function. Tissue metabolite data indicate that the utilization of propionyl-L-carnitine did not lead to accumulation of citric acid cycle intermediates in the span from citrate to 2-oxoglutarate but to an increase in the tissue content of malate. The results show that addition of propionyl-L-carnitine in hearts oxidizing acetoacetate results in improved mechanical performance that is comparable to the mechanical performance of hearts perfused with glucose as the only substrate. This improvement is most likely conferred by anaplerosis, as suggested by enhanced rates of acetoacetate utilization and citric acid flux.

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Year:  1995        PMID: 7840294     DOI: 10.1152/ajpheart.1995.268.1.H441

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  16 in total

1.  Propionyl-L-carnitine effects on postischemic recovery of heart function and substrate oxidation in the diabetic rat.

Authors:  T L Broderick; W Driedzic; D J Paulson
Journal:  Mol Cell Biochem       Date:  2000-03       Impact factor: 3.396

2.  Delayed enhancement cardiac magnetic resonance imaging in propionic acidemia.

Authors:  Satoru Iwashima; Takamichi Ishikawa; Takehiko Ohzeki; Yusaku Endou
Journal:  Pediatr Cardiol       Date:  2010-05-19       Impact factor: 1.655

Review 3.  The redox basis of epigenetic modifications: from mechanisms to functional consequences.

Authors:  Anthony R Cyr; Frederick E Domann
Journal:  Antioxid Redox Signal       Date:  2011-02-05       Impact factor: 8.401

Review 4.  Anaplerotic molecules: current and future.

Authors:  Henri Brunengraber; Charles R Roe
Journal:  J Inherit Metab Dis       Date:  2006 Apr-Jun       Impact factor: 4.982

5.  Adaptation of myocardial substrate metabolism to a ketogenic nutrient environment.

Authors:  Anna E Wentz; D André d'Avignon; Mary L Weber; David G Cotter; Jason M Doherty; Robnet Kerns; Rakesh Nagarajan; Naveen Reddy; Nandakumar Sambandam; Peter A Crawford
Journal:  J Biol Chem       Date:  2010-06-07       Impact factor: 5.157

Review 6.  Metabolic approaches to the treatment of ischemic heart disease: the clinicians' perspective.

Authors:  Andrew A Wolff; Heschi H Rotmensch; William C Stanley; Roberto Ferrari
Journal:  Heart Fail Rev       Date:  2002-04       Impact factor: 4.214

7.  Effects of L-carnitine and its acetyl and propionyl esters on ATP and PCr levels of isolated rat hearts perfused without fatty acids and investigated by means of 31P-NMR spectroscopy.

Authors:  H Löster; T Keller; J Grommisch; W Gründer
Journal:  Mol Cell Biochem       Date:  1999-10       Impact factor: 3.396

8.  Dipropionylcysteine ethyl ester compensates for loss of citric acid cycle intermediates during post ischemia reperfusion in the pig heart.

Authors:  Takhar Kasumov; Naveen Sharma; Hazel Huang; Rajan S Kombu; Andrea Cendrowski; William C Stanley; Henri Brunengraber
Journal:  Cardiovasc Drugs Ther       Date:  2009-12       Impact factor: 3.727

9.  Differential effects of octanoate and heptanoate on myocardial metabolism during extracorporeal membrane oxygenation in an infant swine model.

Authors:  Masaki Kajimoto; Dolena R Ledee; Aaron K Olson; Nancy G Isern; Christine Des Rosiers; Michael A Portman
Journal:  Am J Physiol Heart Circ Physiol       Date:  2015-07-31       Impact factor: 4.733

10.  Insulin-stimulated cardiac glucose oxidation is increased in high-fat diet-induced obese mice lacking malonyl CoA decarboxylase.

Authors:  John R Ussher; Timothy R Koves; Jagdip S Jaswal; Liyan Zhang; Olga Ilkayeva; Jason R B Dyck; Deborah M Muoio; Gary D Lopaschuk
Journal:  Diabetes       Date:  2009-05-28       Impact factor: 9.461

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