Literature DB >> 28834631

Altered myocardial force generation in end-stage human heart failure.

Zoltán Papp1, Jolanda van der Velden2, Attila Borbély1, István Édes1, Ger J M Stienen2.   

Abstract

AIMS: This study aimed to elucidate the molecular background of increased Ca2+ sensitivity of force production in cardiomyocytes of end-stage human heart failure. METHODS AND
RESULTS: Ca2+ -activated isometric force and the cross-bridge specific rate of force redevelopment (ktr ) were determined in Triton-skinned myocytes from end-stage failing and non-failing donor hearts. Measurements (control: pH 7.2, 0 mM inorganic phosphate (Pi )) were performed under test conditions that probed either the Ca2+ -regulatory function of the thin filaments (pH 6.5), the kinetics of the actin-myosin cross-bridge cycle (10 mM Pi ), or both (pH 6.5, 10 mM Pi ). The control maximal Ca2+ -activated force (Fo ) and ktrmax did not differ between failing and non-failing myocytes. At submaximal [Ca2+ ], however, both force and ktr were higher in failing than in donor myocytes. The difference in the Ca2+ sensitivities of force production was preserved when the thin filament regulatory function was perturbed by acidosis (pH 6.5) but was abolished by cross-bridge modulation (i.e. by Pi ) both at pH 7.2 and at pH 6.5. Pi induced a larger reduction in force but a smaller increase in ktr in the failing myocytes than in the non-failing myocytes at submaximal [Ca2+ ].
CONCLUSION: The enhanced Pi sensitivity of the actin-myosin interaction suggests that the Pi release step of the actin-myosin cross-bridge cycle is modified during end-stage human heart failure. This might be of functional importance when Pi accumulates (e.g. during cardiac ischaemia). Moreover, this alteration can influence cardiac energetics and the clinical efficacy of sarcomere targeted agents in human heart failure.
© 2015 The Authors. ESC Heart Failure published by John Wiley & Sons Ltd on behalf of the European Society of Cardiology.

Entities:  

Keywords:  Actin-myosin cross-bridge cycle; Cardiomyocyte; Human heart failure; Myofilament

Year:  2015        PMID: 28834631     DOI: 10.1002/ehf2.12020

Source DB:  PubMed          Journal:  ESC Heart Fail        ISSN: 2055-5822


  4 in total

1.  Analysis of decay kinetics of the cytosolic calcium transient induced by oxytocin in rat myometrium smooth muscle cells.

Authors:  S O Karakhim; S G Shlykov; L G Babich; D V Sinko
Journal:  J Muscle Res Cell Motil       Date:  2021-02-15       Impact factor: 2.698

Review 2.  Cardiomyopathies and Related Changes in Contractility of Human Heart Muscle.

Authors:  Petr G Vikhorev; Natalia N Vikhoreva
Journal:  Int J Mol Sci       Date:  2018-07-31       Impact factor: 5.923

3.  The contractile adaption to preload depends on the amount of afterload.

Authors:  Hanna Schotola; Samuel T Sossalla; André Renner; Jan Gummert; Bernhard C Danner; Peter Schott; Karl Toischer
Journal:  ESC Heart Fail       Date:  2017-04-19

4.  Heart Failure in Humans Reduces Contractile Force in Myocardium From Both Ventricles.

Authors:  Cheavar A Blair; Elizabeth A Brundage; Katherine L Thompson; Arnold Stromberg; Maya Guglin; Brandon J Biesiadecki; Kenneth S Campbell
Journal:  JACC Basic Transl Sci       Date:  2020-07-22
  4 in total

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