Therapeutic Effects of Nrf2 Activation by Bardoxolone Methyl in Chronic Heart Failure
Changhai Tian1, Lie Gao2, Andi Zhang2
1Department of Cellular and Integrative Physiology, University of Nebraska Medical Center, Omaha, Nebraska ctian@unmc.edu.
Abstract:
Oxidative stress plays an important role in the pathogenesis of chronic heart failure (CHF) in many tissues. Increasing evidence suggests that systemic activation of nuclear factor (erythroid-derived 2)-like 2 (Nrf2) signaling can protect against postinfarct cardiac remodeling by reducing oxidative stress. However, it remains to be elucidated if Nrf2 activation exerts therapeutic effects in the CHF state. Here, we investigated the beneficial hemodynamic effects of bardoxolone methyl (2-Cyano-3,12-dioxooleana-1,9(11)-dien-28-oic acid methyl ester, CDDO-Me), a pharmacological activator of Nrf2, in a rodent model of CHF. Based on echocardiographic analysis, rats at 12 weeks post-myocardial infarction (MI) were randomly split into four groups. CDDO-Me (5 mg/kg, i.p.) was administered daily for another 2 weeks in sham and CHF rats and compared with vehicle treatment. Echocardiographic and hemodynamic analysis suggest that short-term CDDO-Me administration increased stroke volume and cardiac output in CHF rats and decreased left ventricle end-diastolic pressure. Molecular studies revealed that CDDO-Me-induced cardiac functional improvement was attributed to an increase of both Nrf2 transcription and translation, and a decrease of oxidative stress in the noninfarcted areas of the heart. Furthermore, CDDO-Me reduced NF-κB binding and increased Nrf2 binding to the CREB-binding protein, which may contribute to the selective increase of Nrf2 downstream targets, including NADPH Oxidase Quinone 1, Heme Oxygenase 1, Catalase, and Glutamate-Cysteine Ligase Catalytic Subunit, and the attenuation of myocardial inflammation in CHF rats. Our findings suggest that Nrf2 activation may provide beneficial cardiac effects in MI-mediated CHF. SIGNIFICANCE STATEMENT: Chronic heart failure (CHF) is the leading cause of death among the aged worldwide. The imbalance between pro- and antioxidant pathways is a determinant in the pathogenesis of CHF. Systemic activation of Nrf2 and antioxidant protein signaling by bardoxolone methyl may have beneficial effects on cardiac function and result in improvements by enhancing antioxidant enzyme expression and attenuating myocardial inflammation.
Insights
Bardoxolone methyl activates the Nrf2 pathway, improving cardiac function in chronic heart failure (CHF) rats by reducing oxidative stress and inflammation. This Nrf2 activation offers potential therapeutic benefits for heart failure.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Pharmacology
Background:
- Oxidative stress is a key factor in chronic heart failure (CHF) pathogenesis.
- Nuclear factor (erythroid-derived 2)-like 2 (Nrf2) signaling activation shows promise in mitigating cardiac remodeling.
- Therapeutic potential of Nrf2 activation in established CHF requires further investigation.
Purpose of the Study:
- To investigate the hemodynamic effects of bardoxolone methyl (CDDO-Me), an Nrf2 activator, in a rodent model of chronic heart failure (CHF).
- To elucidate the molecular mechanisms underlying CDDO-Me's effects on cardiac function and oxidative stress in CHF.
Main Methods:
- Rodent model of chronic heart failure (CHF) induced by myocardial infarction (MI).
- Administration of bardoxolone methyl (CDDO-Me) or vehicle for 2 weeks post-MI.
- Echocardiographic and hemodynamic assessments, alongside molecular analyses of Nrf2 and oxidative stress markers.
Main Results:
- CDDO-Me treatment improved cardiac output and stroke volume while decreasing left ventricle end-diastolic pressure in CHF rats.
- Molecular analysis confirmed increased Nrf2 transcription/translation and reduced oxidative stress in non-infarcted heart tissue.
- CDDO-Me modulated NF-κB and Nrf2 binding, upregulating antioxidant enzymes and reducing myocardial inflammation.
Conclusions:
- Short-term bardoxolone methyl administration demonstrates beneficial hemodynamic effects in a rodent model of MI-induced CHF.
- Nrf2 pathway activation by CDDO-Me mitigates oxidative stress and inflammation, contributing to improved cardiac function.
- Nrf2 activation represents a potential therapeutic strategy for managing chronic heart failure.
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