Literature DB >> 19347572

New aspects of impaired mitochondrial function in heart failure.

Mariana G Rosca1, Charles L Hoppel.   

Abstract

This minireview focuses on the impairment of function in cardiac mitochondria in heart failure (HF). It is generally accepted that chronic energy starvation leads to cardiac mechanical dysfunction in HF. Mitochondria are the primary ATP generator for the heart. Current evidence suggests that the assembly of the electron transport chain (ETC) into respirasomes provides structural support for mitochondrial oxidative phosphorylation by facilitating electron channeling and perhaps by preventing electron leak and superoxide production. Defects have been purported to occur in the individual ETC complexes or components of the phosphorylation apparatus in HF, but these defects have not been linked to impaired mitochondrial function. Moreover, studies that reported decreased mitochondrial oxidative phosphorylation in HF did not identify the site of the defect. We propose a sequential mechanistic pathway in which the decrease in functional respirasomes in HF is the primary event causing decreased oxidative phosphorylation and increased reactive oxygen species production, leading to a progressive decrease in cardiac performance.

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Year:  2009        PMID: 19347572     DOI: 10.1007/s10863-009-9215-9

Source DB:  PubMed          Journal:  J Bioenerg Biomembr        ISSN: 0145-479X            Impact factor:   2.945


  53 in total

Review 1.  Mitochondrial pathology in cardiac failure.

Authors:  J Marin-Garcia; M J Goldenthal; G W Moe
Journal:  Cardiovasc Res       Date:  2001-01       Impact factor: 10.787

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Journal:  Biochim Biophys Acta       Date:  2008-06-03

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Journal:  Circ Res       Date:  1968-09       Impact factor: 17.367

6.  Control of mitochondrial respiration. The contribution of the adenine nucleotide translocator depends on the ATP- and ADP-consuming enzymes.

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Journal:  Biochim Biophys Acta       Date:  1983-02-17

7.  Abnormal mitochondrial respiration in failed human myocardium.

Authors:  V G Sharov; A V Todor; N Silverman; S Goldstein; H N Sabbah
Journal:  J Mol Cell Cardiol       Date:  2000-12       Impact factor: 5.000

8.  Myocardial phosphocreatine-to-ATP ratio is a predictor of mortality in patients with dilated cardiomyopathy.

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Journal:  Circulation       Date:  1997-10-07       Impact factor: 29.690

9.  Improvement of cardiac function and myocardial energy metabolism of rats with chronic heart failure by long-term coenzyme Q10 treatment.

Authors:  A Sanbe; K Tanonaka; Y Niwano; S Takeo
Journal:  J Pharmacol Exp Ther       Date:  1994-04       Impact factor: 4.030

10.  In vivo TNF-alpha inhibition ameliorates cardiac mitochondrial dysfunction, oxidative stress, and apoptosis in experimental heart failure.

Authors:  Gordon W Moe; Jose Marin-Garcia; Andrea Konig; Michael Goldenthal; Xiangru Lu; Qingping Feng
Journal:  Am J Physiol Heart Circ Physiol       Date:  2004-06-17       Impact factor: 4.733

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  23 in total

Review 1.  Mitochondria in heart failure.

Authors:  Mariana G Rosca; Charles L Hoppel
Journal:  Cardiovasc Res       Date:  2010-07-28       Impact factor: 10.787

Review 2.  Monoamine oxidases (MAO) in the pathogenesis of heart failure and ischemia/reperfusion injury.

Authors:  Nina Kaludercic; Andrea Carpi; Roberta Menabò; Fabio Di Lisa; Nazareno Paolocci
Journal:  Biochim Biophys Acta       Date:  2010-09-24

Review 3.  Heart failure and mitochondrial dysfunction: the role of mitochondrial fission/fusion abnormalities and new therapeutic strategies.

Authors:  Anne A Knowlton; Le Chen; Zulfiqar A Malik
Journal:  J Cardiovasc Pharmacol       Date:  2014-03       Impact factor: 3.105

4.  Mitochondrial reactive oxygen species production and respiratory complex activity in rats with pressure overload-induced heart failure.

Authors:  Michael Schwarzer; Moritz Osterholt; Anne Lunkenbein; Andrea Schrepper; Paulo Amorim; Torsten Doenst
Journal:  J Physiol       Date:  2014-06-20       Impact factor: 5.182

Review 5.  Mitochondrial therapeutics for cardioprotection.

Authors:  Raquel S Carreira; Pamela Lee; Roberta A Gottlieb
Journal:  Curr Pharm Des       Date:  2011       Impact factor: 3.116

6.  Coenzyme q and the respiratory chain: coenzyme q pool and mitochondrial supercomplexes.

Authors:  José Antonio Enriquez; Giorgio Lenaz
Journal:  Mol Syndromol       Date:  2014-07

7.  Cyclophilin D is required for mitochondrial removal by autophagy in cardiac cells.

Authors:  Raquel S Carreira; Youngil Lee; Mariam Ghochani; Åsa B Gustafsson; Roberta A Gottlieb
Journal:  Autophagy       Date:  2010-05-16       Impact factor: 16.016

8.  PKCε promotes cardiac mitochondrial and metabolic adaptation to chronic hypobaric hypoxia by GSK3β inhibition.

Authors:  Joy McCarthy; Amanda Lochner; Lionel H Opie; Michael N Sack; M Faadiel Essop
Journal:  J Cell Physiol       Date:  2011-09       Impact factor: 6.384

Review 9.  Autophagy during cardiac stress: joys and frustrations of autophagy.

Authors:  Roberta A Gottlieb; Robert M Mentzer
Journal:  Annu Rev Physiol       Date:  2010       Impact factor: 19.318

10.  Mitochondrial respiratory supercomplex association limits production of reactive oxygen species from complex I.

Authors:  Evelina Maranzana; Giovanna Barbero; Anna Ida Falasca; Giorgio Lenaz; Maria Luisa Genova
Journal:  Antioxid Redox Signal       Date:  2013-06-28       Impact factor: 8.401

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