Santos_2015_Neurosci_292_13

Reference

Title : Anxiolytic-like, stimulant and neuroprotective effects of Ilex paraguariensis extracts in mice - Santos_2015_Neurosci_292_13
Author(s) : Santos EC , Bicca MA , Blum-Silva CH , Costa AP , Dos Santos AA , Schenkel EP , Farina M , Reginatto FH , De Lima TC
Ref : Neuroscience , 292 :13 , 2015
Abstract :

Yerba-mate (Ilex paraguariensis St. Hil.) is the most used beverage in Latin America with approximately 426 thousand of tons consumed per year. Considering the broad use of this plant, we aimed to investigate the anxiety-like and stimulant activity of both the hydroethanolic (HE) and aqueous (AE) extracts from leaves of I. paraguariensis. Swiss mice were treated with I. paraguariensis HE or AE chronically or acutely, respectively, followed by evaluation in the elevated plus-maze (EPM; anxiety-like paradigm), open field (OF; locomotor activity) or the step-down avoidance task (memory assessment). Following behavioral protocols the brains were collected for evaluation of acetylcholinesterase (AChE) activity ex vivo. Chronic treatment with HE induced an anxiolytic-like effect and increased motor activity besides augmented AChE activity. Additionally, acute treatment with AE prevented the scopolamine-induced memory deficit in the step-down avoidance task. Overall, our results indicate the importance of the I. paraguariensis-induced CNS effects, since it is a widely used nutraceutical. We have reported anxiolytic, stimulant and neuroprotective effects for this plant species. These effects are potentially modulated by the cholinergic system as well as by caffeine.

PubMedSearch : Santos_2015_Neurosci_292_13
PubMedID: 25681522

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Citations formats

Santos EC, Bicca MA, Blum-Silva CH, Costa AP, Dos Santos AA, Schenkel EP, Farina M, Reginatto FH, De Lima TC (2015)
Anxiolytic-like, stimulant and neuroprotective effects of Ilex paraguariensis extracts in mice
Neuroscience 292 :13

Santos EC, Bicca MA, Blum-Silva CH, Costa AP, Dos Santos AA, Schenkel EP, Farina M, Reginatto FH, De Lima TC (2015)
Neuroscience 292 :13