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epicatechin/zawał

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The preventive effects of (-) epicatechin on oxidative stress, cardiac mitochondrial damage, altered membrane bound adenosine triphosphatases and minerals were reported previously in isoproterenol-induced myocardial infarction model. Leakage of lysosomal glycohydrolases and cathepsins play an

Effects of (-)-epicatechin on myocardial infarct size and left ventricular remodeling after permanent coronary occlusion.

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OBJECTIVE We examined the effects of the flavanol (-)-epicatechin on short- and long-term infarct size and left ventricular (LV) structure and function after permanent coronary occlusion (PCO) and the potential involvement of the protective protein kinase B (AKT)/extracellular signal-related kinase
(-)-Epicatechin (EPI) is cardioprotective in the setting of ischemia/reperfusion (IR) injury and doxycycline (DOX) is known to preserve cardiac structure/function after myocardial infarction (MI). The main objective of this study was to examine the effects of EPI and DOX co-administration on MI size

Intravenous (-)-epicatechin reduces myocardial ischemic injury by protecting mitochondrial function.

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BACKGROUND Targeting the mitochondria during ischemia/reperfusion (IR) can confer cardioprotection leading to improved clinical outcomes. The cardioprotective potential of (-)-epicatechin (EPI) during IR via modulation of mitochondrial function was evaluated. RESULTS Ischemia was induced in rats via

Polyphenols from Parabarium huaitingii and their positive inotropic and anti-myocardial infarction effects in rats.

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Eight phenolic compounds, including (-)-epicatechin (1) and seven proanthocyanidins (2-8), were obtained from the butanol extract of Parabarium huaitingii (PHB). Their chemical structures were identified based on analyses of mass spectra (MS), NMR, CD spectra, and partial acid catalyzed thiolytic
Cardiac mitochondrial damage plays an important role in the pathology of myocardial infarction. The protective effects of (-) epicatechin on cardiac mitochondrial damage in isoproterenol induced myocardial infarction were evaluated in rats. Rats were pretreated with (-) epicatechin (20 mg/kg body

Preventive effects of (-) epicatechin on altered adenosine triphosphatases and minerals in isoproterenol-induced myocardial infarcted rats.

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The present study was aimed to evaluate the preventive effects of (-) epicatechin on alterations in the activities/levels of adenosine triphosphatases and minerals in isoproterenol-induced myocardial infarcted rats. Male albino Wistar rats were pretreated with (-) epicatechin (20 mg/kg body weight)

Mortality reduction among persons with type 2 diabetes: (-)-Epicatechin as add-on therapy to metformin?

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Diabetes has become a worldwide epidemic, and is growing at a rapid rate with drastic projections for developing countries. Mexico occupies the ninth place worldwide for type 2 diabetes prevalence, and in the foreseeable future, it is expected rise to the seventh place. Myocardial infarction is the
(-) Epicatechin rich foods and (-) epicatechin improve cardiovascular function. Consumption of diets rich in flavonoids is associated with reduced risk of cardiovascular diseases. Oxidative stress resulting from increased production of free radicals associated with decreased levels of antioxidants

Epicatechin-3-gallate signaling and protection against cardiac ischemia/reperfusion injury.

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At concentrations found in human after ingestion of 1-2 cups of green tea, Epicatechin-3-gallate (ECG) modulates Na/K-ATPase conformation and activity. Akin to ouabain, an archetypal Na/K-ATPase ligand of the cardiotonic steroids (CTS) family, ECG also activates PKCɛ translocation and increases the

Dark chocolate receptors: epicatechin-induced cardiac protection is dependent on delta-opioid receptor stimulation.

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Epicatechin, a flavonoid, is a well-known antioxidant linked to a variety of protective effects in both humans and animals. In particular, its role in protection against cardiovascular disease has been demonstrated by epidemiologic studies. Low-dose epicatechin, which does not have significant

Short- and long-term effects of (-)-epicatechin on myocardial ischemia-reperfusion injury.

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Epidemiological studies have shown a correlation between flavonoid-rich diets and improved cardiovascular prognosis. Cocoa contains large amounts of flavonoids, in particular flavanols (mostly catechins and epicatechins). Flavonoids possess pleiotropic properties that may confer protective effects

The flavanol (-)-epicatechin prevents stroke damage through the Nrf2/HO1 pathway.

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Epidemiologic studies have shown that foods rich in polyphenols, such as flavanols, can lower the risk of ischemic heart disease; however, the mechanism of protection has not been clearly established. In this study, we investigated whether epicatechin (EC), a flavanol in cocoa and tea, is protective

Efficacy of prophylactic flavan-3-ol in permanent focal ischemia in 12-mo-old mice.

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The consumption of flavan-3-ol-containing foods, including (-)-epicatechin (EC), has been linked to lower incidence of cardiovascular disease and stroke. We previously demonstrated nuclear transcription factor erythroid 2p45-related factor-2 (Nrf2) -dependent EC efficacy in reducing stroke-induced

Comparison of cardioprotective abilities between the flesh and skin of grapes.

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Recent studies have documented that grapes and grape juices are equally cardioprotective as red wine. The existing reports implicate that the skin and seeds of the grapes containing polyphenolic antioxidants are instrumental for the cardioprotective properties of grapes. The present study examines
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