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April 1, 2010British Journal of Pharmacology73 citationsOpen Access

The contribution of reactive oxygen species and p38 mitogen‐activated protein kinase to myofilament oxidation and progression of heart failure in rabbits

PHPhilipp HeuschMCMarcella CantonSAStephanie Aker

Structured PICO

Does p38 MAP kinase inhibition or antioxidant therapy improve contractile function and reduce ROS formation in a rabbit model of pacing-induced heart failure?

P
Population
Rabbit model of heart failure induced by 3 weeks of rapid left ventricular pacing
I
Intervention
Vitamins C and E; p38 MAP kinase inhibitor SB281832
C
Comparator
Untreated heart failure rabbits; sham rabbits
O
Outcome
Contractile function (left ventricular shortening fraction), ROS formation, myofibrillar protein oxidation, p38 MAP kinase activation, and apoptosissurrogate

In a rabbit model of heart failure, p38 MAP kinase activation acts upstream of ROS formation, and its inhibition improves contractile function and reduces myofibrillar oxidation.

Abstract

BACKGROUND AND PURPOSE: The formation of reactive oxygen species (ROS) is increased in heart failure (HF). However, the causal and mechanistic relationship of ROS formation with contractile dysfunction is not clear in detail. Therefore, ROS formation, myofibrillar protein oxidation and p38 MAP kinase activation were related to contractile function in failing rabbit hearts. EXPERIMENTAL APPROACH AND KEY RESULTS: Three weeks of rapid left ventricular (LV) pacing reduced LV shortening fraction (SF, echocardiography) from 32 +/- 1% to 13 +/- 1%. ROS formation, as assessed by dihydroethidine staining, increased by 36 +/- 8% and was associated with increased tropomyosin oxidation, as reflected by dimer formation (dimer to monomer ratio increased 2.28 +/- 0.66-fold in HF vs. sham, P < 0.05). Apoptosis (TdT-mediated dUTP nick end labelling staining) increased more than 12-fold after 3 weeks of pacing when a significant increase in the phosphorylation of p38 MAP kinase and HSP27 was detected (Western blotting). Vitamins C and E abolished the increases in ROS formation and tropomyosin oxidation along with an improvement of LVSF (19 +/- 1%, P < 0.05 vs. untreated HF) and prevention of apoptosis, but without modifying p38 MAP kinase activation. Inhibition of p38 MAP kinase by SB281832 counteracted ROS formation, tropomyosin oxidation and contractile failure, without affecting apoptosis. CONCLUSIONS AND IMPLICATIONS: Thus, p38 MAP kinase activation appears to be upstream rather than downstream of ROS, which impacts on LV function through myofibrillar oxidation. p38 MAP kinase inhibition is a potential target to prevent or treat HF.

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Cite This Study

Heusch et al. (2010) studied this question.

synapsesocial.com/papers/6a1bf2fc27b545b111a93ee6https://doi.org/10.1111/j.1476-5381.2010.00793.x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Stress kinase phosphorylation is increased in pacing-induced heart failure in rabbits2003 · 28 citations
  2. 2Vascular endothelial dysfunction and superoxide anion production in heart failure are p38 MAP kinase-dependent2004 · 47 citations
  3. 3Subendocardial Increase in Reactive Oxygen Species Production Affects Regional Contractile Function in Ischemic Heart Failure2012 · 28 citations
  4. 4p38 MAPK Inhibition Improves Heart Function in Pressure-Loaded Right Ventricular Hypertrophy2017 · 119 citations
  5. 5The <i>in vivo</i> role of p38 MAP kinases in cardiac remodeling and restrictive cardiomyopathy2001 · 336 citations