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curcuminoid/stroke

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Neuroprotective and neurotrophic curcuminoids to treat stroke: a translational perspective.

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BACKGROUND Curcumin has been investigated in preclinical and translational stroke models because of its pleiotropic 'neuroprotective' activities. Since curcumin has poor blood-brain barrier (BBB) penetration following acute administration, creative medicinal chemistry has been used to modify the

Curcuminoids limit neutrophil-mediated reperfusion injury in experimental stroke by targeting the endothelium.

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OBJECTIVE We sought to test the hypothesis that turmeric-derived curcuminoids limit reperfusion brain injury in an experimental model of stroke via blockade of early microvascular inflammation during reperfusion. METHODS Male Sprague Dawley rats subjected to MCAO/R were treated with turmeric-derived
Stroke is a one of the leading causes of disease and deaths worldwide, which causes irreversible deterioration of the central nervous system. Curcuminoids are reported to have a potential role in the amelioration of cerebral ischemia but they exhibit low serum and tissue levels due to low solubility

Neuroprotective efficacy and therapeutic window of curcuma oil: in rat embolic stroke model.

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BACKGROUND Among the naturally occurring compounds, turmeric from the dried rhizome of the plant Curcuma longa has long been used extensively as a condiment and a household remedy all over Southeast Asia. Turmeric contains essential oil, yellow pigments (curcuminoids), starch and oleoresin. The
Oxidative stress and inflammatory damage play an important role in cerebral ischemic pathogenesis and may represent a target for treatment. The development of new strategies for enhancing drug delivery to the brain is of great importance in diagnostics and therapeutics of central nervous diseases.

Neuroprotective effect of curcumin on focal cerebral ischemic rats by preventing blood-brain barrier damage.

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Curcumin, a member of the curcuminoid family of compounds, is a yellow colored phenolic pigment obtained from powdered rhizome of C. longa Linn. Recent studies have demonstrated that curcumin has protective effects against cerebral ischemia/reperfusion injury. However, little is known about its

Effects of curcumin on neurological diseases: focus on astrocytes

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Astrocytes are the most abundant glial cells in the central nervous system, and are important players in both brain injury and neurodegenerative disease. Curcumin (1,7-bis[4-hydroxy-3-methoxyphenyl]-1,6-heptadiene-3,5-dione), the major active component of turmeric, belongs to the curcuminoid family
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