Literature DB >> 22131314

The role of PPAR in myocardial response to ischemia in normal and diseased heart.

Tana Ravingerova1, Adriana Adameova, Slavka Carnicka, Martina Nemcekova, Tara Kelly, Jana Matejikova, Eleftheria Galatou, Eleftheria Barlaka, Antigone Lazou.   

Abstract

Peroxisome proliferator-activated receptors (PPAR), ligand-activated transcription factors, belong to the nuclear hormone receptor superfamily regulating expression of genes involved in different aspects of lipid metabolism, inflammation and cardiac energy production. Activation of PPAR-α isoform by its natural ligands, fatty acids (FA) and eicosanoids, promotes mitochondrial FA oxidation as the primary ATP-generating pathway. On the other hand, PPAR-γ regulates lipid anabolism or storage, while, until recently, the function of PPAR-β/δ has been less explored. Under conditions associated with acute or chronic oxygen deprivation, PPAR-α modulates expression of genes that determine substrate switch (FA vs. glucose) aimed at maintenance of basic cardiac function. Although PPAR-α and PPAR-γ synthetic agonists, hypolipidemic and antidiabetic drugs, have been reported to protect the heart against ischemia/reperfusion injury, it is still a matter of debate whether PPAR activation plays a beneficial or detrimental role in myocardial response to ischemia, in particular, in pathological conditions. This article reviews some findings demonstrating the impact of PPAR activation on cardiac resistance to ischemia in normal and pathologically altered heart. Specifically, it addresses the issue of susceptibility to ischemia in the diabetic myocardium, with particular regards to the role of PPAR. Finally, involvement of PPAR in the mechanisms of lipid-independent cardioprotective effects of some hypolipidemic drugs is also discussed.

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Year:  2011        PMID: 22131314     DOI: 10.4149/gpb_2011_04_329

Source DB:  PubMed          Journal:  Gen Physiol Biophys        ISSN: 0231-5882            Impact factor:   1.512


  9 in total

1.  Activated peroxisomal fatty acid metabolism improves cardiac recovery in ischemia-reperfusion.

Authors:  Edgars Liepinsh; Elina Skapare; Janis Kuka; Marina Makrecka; Helena Cirule; Edijs Vavers; Eduards Sevostjanovs; Solveiga Grinberga; Osvalds Pugovics; Maija Dambrova
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2013-03-26       Impact factor: 3.000

2.  The PPARβ/δ agonist GW0742 modulates signaling pathways associated with cardiac myocyte growth via a non-genomic redox mechanism.

Authors:  Eleftheria Galatou; Tara Kelly; Antigone Lazou
Journal:  Mol Cell Biochem       Date:  2014-06-18       Impact factor: 3.842

Review 3.  Pivotal Roles of Peroxisome Proliferator-Activated Receptors (PPARs) and Their Signal Cascade for Cellular and Whole-Body Energy Homeostasis.

Authors:  Shreekrishna Lamichane; Babita Dahal Lamichane; Sang-Mo Kwon
Journal:  Int J Mol Sci       Date:  2018-03-22       Impact factor: 5.923

4.  Sphingolipid Synthesis Inhibition by Myriocin Administration Enhances Lipid Consumption and Ameliorates Lipid Response to Myocardial Ischemia Reperfusion Injury.

Authors:  Fabiola Bonezzi; Marco Piccoli; Michele Dei Cas; Rita Paroni; Alessandra Mingione; Michelle M Monasky; Anna Caretti; Chiara Riganti; Riccardo Ghidoni; Carlo Pappone; Luigi Anastasia; Paola Signorelli
Journal:  Front Physiol       Date:  2019-08-09       Impact factor: 4.566

5.  Pharmacological activation of PPARβ/δ preserves mitochondrial respiratory function in ischemia/reperfusion via stimulation of fatty acid oxidation-linked respiration and PGC-1α/NRF-1 signaling.

Authors:  Ioanna Papatheodorou; Marina Makrecka-Kuka; Janis Kuka; Edgars Liepinsh; Maija Dambrova; Antigone Lazou
Journal:  Front Endocrinol (Lausanne)       Date:  2022-08-15       Impact factor: 6.055

6.  Cardioprotective Effects of PPARβ/δ Activation against Ischemia/Reperfusion Injury in Rat Heart Are Associated with ALDH2 Upregulation, Amelioration of Oxidative Stress and Preservation of Mitochondrial Energy Production.

Authors:  Ioanna Papatheodorou; Eleftheria Galatou; Georgios-Dimitrios Panagiotidis; Táňa Ravingerová; Antigone Lazou
Journal:  Int J Mol Sci       Date:  2021-06-15       Impact factor: 6.208

7.  MuRF2 regulates PPARγ1 activity to protect against diabetic cardiomyopathy and enhance weight gain induced by a high fat diet.

Authors:  Jun He; Megan T Quintana; Jenyth Sullivan; Traci L Parry; Trisha J Grevengoed; Jonathan C Schisler; Joseph A Hill; Cecelia C Yates; Rudo F Mapanga; M Faadiel Essop; William E Stansfield; James R Bain; Christopher B Newgard; Michael J Muehlbauer; Yipin Han; Brian A Clarke; Monte S Willis
Journal:  Cardiovasc Diabetol       Date:  2015-08-05       Impact factor: 9.951

Review 8.  Decoding telomere protein Rap1: Its telomeric and nontelomeric functions and potential implications in diabetic cardiomyopathy.

Authors:  Yin Cai; Vidya Kandula; Ramoji Kosuru; Xiaodong Ye; Michael G Irwin; Zhengyuan Xia
Journal:  Cell Cycle       Date:  2017-08-30       Impact factor: 4.534

9.  PPARγ-Independent Side Effects of Thiazolidinediones on Mitochondrial Redox State in Rat Isolated Hearts.

Authors:  Matthias L Riess; Reem Elorbany; Dorothee Weihrauch; David F Stowe; Amadou K S Camara
Journal:  Cells       Date:  2020-01-20       Impact factor: 6.600

  9 in total

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