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Prospective neurobiological effects of the aerial and root extracts and some pure compounds of randomly selected Scorzonera species
Authors:F. Sezer Senol  Ozlem Bahadir Acikara  Gulcin Saltan Citoglu  Stefano Dall’ Acqua  Fevzi Özgökce
Affiliation:1. Department of Pharmacognosy, Faculty of Pharmacy, Gazi University AnkaraTurkey;2. Department of Pharmacognosy, Faculty of Pharmacy, Ankara University AnkaraTurkey;3. Department of Pharmacological and Pharmaceutical Sciences, University of Padova PadovaItaly;4. Department of Biology, Faculty of Sciences and Letters, Yuzuncu Yil University VanTurkey
Abstract:Context: Scorzonera L. species (Asteraceae) are edible and as medicinal plants are used for various purposed in folk medicine.

Objective: The methanol extracts of the aerial parts and roots from 27 Scorzonera taxa were investigated for their possible neurobiological effects.

Materials and methods: Inhibitory potential of the Scorzonera species was tested against acetylcholinesterase (AChE), butyrylcholinesterase (BChE), and tyrosinase (TYRO) at 100?µg?mL?1 using ELISA microtiter assay. Antioxidant activity of the extracts was tested with radical scavenging activity, metal-chelation capacity, ferric- (FRAP), and phosphomolibdenum-reducing antioxidant power (PRAP) assays. Chlorogenic acid, hyperoside, rutin, and scorzotomentosin-4-O-β-glucoside were also screened in the same manner. Total phenol and flavonoid quantification in the extracts were determined spectrophotometrically.

Results: The aerial parts of Scorzonera pisidica (40.25?±?0.74%) and chlorogenic acid (46.97?±?0.82%) displayed the highest TYRO inhibition, while the remaining samples showed only trivial inhibition against cholinesterases (2.08?±?1.35%–25.32?±?1.37%). The same extract of S. pisidica was revealed to be the most potent in scavenging of all three radicals and FRAP assay.

Discussion and conclusion: Out of 27 taxa, S. pisidica, in particular, may deserve further investigation for its neuroprotective potential.
Keywords:Antioxidant activity  Asteraceae  cholinesterase  neuroprotection  Scorzonera  tyrosinase
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