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June 7, 2006Cardiovascular Research141 citationsOpen Access

Reduction of inflammatory cytokine expression and oxidative damage by erythropoietin in chronic heart failure

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YLY LIGTG. TakemuraHOHideshi Okada

Structured PICO

Does late treatment with erythropoietin improve left ventricular function and reduce inflammation and oxidative stress in mice with chronic post-MI heart failure?

P
Population
Mice with chronic post-MI heart failure (treatment beginning 6 weeks after induction of large MI)
I
Intervention
Erythropoietin (EPO) 1500 U/kg, twice a week for 4 weeks
C
Comparator
Control (untreated failing hearts)
O
Outcome
Left ventricular dilatation and function, inflammatory cell infiltration, fibrosis, vascular density, and inflammatory cytokine levelssurrogate

Late treatment with erythropoietin in a mouse model of chronic post-MI heart failure improves left ventricular function and reduces inflammation and oxidative stress via Stat and Akt signaling pathways.

Abstract

OBJECTIVES: Late treatment with erythropoietin (EPO), as well as the administration before the onset of or during the acute stage of myocardial infarction (MI), has recently been shown to mitigate post-MI heart failure. We investigated the mechanisms, including the downstream signaling pathways, for the beneficial effect of late treatment with EPO on chronic post-MI heart failure. METHODS AND RESULTS: EPO (1500 U/kg, twice a week) was administered to mice beginning 6 weeks after induction of large MI. The EPO treatment for 4 weeks diminished left ventricular dilatation and improved function. It significantly reduced inflammatory cell infiltration and fibrosis, and increased vascular density in noninfarcted areas. The elevated levels of the inflammatory cytokines interleukin (IL)-1beta, IL-6, tumor necrosis factor-alpha and transforming growth factor-beta1 seen in the failing hearts were returned nearly to control levels by EPO treatment. Oxidative damage in surviving cardiomyocytes was also significantly attenuated by EPO. Expression of EPO receptor was upregulated in failing hearts, and EPO treatment led to myocardial activation of signal transducer and activator of transcription-3 (Stat3), Stat5, and Akt. These in vivo effects of EPO were confirmed in vitro in experiments that showed the anti-inflammatory and anti-oxidant effects of EPO to be mediated via Stat and Akt activation. Finally, the beneficial effects of EPO were found to persist for 4 weeks after discontinuing treatment. CONCLUSIONS: It thus appears that Stat-mediated reduction of inflammation and cytokine production and Akt-mediated attenuation of oxidative stress accompany the beneficial effects of late treatment with EPO on chronic post-MI heart failure.

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Cite This Study

LI et al. (2006) studied this question.

synapsesocial.com/papers/6a1ca5e2566b67b7d585bc4ahttps://doi.org/10.1016/j.cardiores.2006.06.003
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