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Chromatographic fingerprint analysis, antioxidant properties, and inhibition of cholinergic enzymes (acetylcholinesterase and butyrylcholinesterase) of phenolic extracts from Irvingia gabonensis (Aubry-Lecomte ex O'Rorke) Baill bark.

作者信息

Ojo Oluwafemi Adeleke, Ojo Adebola Busola, Ajiboye Basiru Olaitan, Oyinloye Babatunji Emmanuel, Akinyemi Ayodele Jacob, Okesola Mary Abiola, Boligon Aline Augusti, de Campos Marli Matiko Anraku

机构信息

Department of Biochemistry, Afe Babalola University, Mail Bag 5454, Ado-Ekiti, Nigeria, Phone: 234-703-782-4647.

Department of Medical Biochemistry, Afe Babalola University, Ado-Ekiti, Nigeria.

出版信息

J Basic Clin Physiol Pharmacol. 2018 Mar 28;29(2):217-224. doi: 10.1515/jbcpp-2017-0063.

Abstract

BACKGROUND

Irvingia gabonensis stem bark is a medicinal plant used in most parts of Africa to manage a number of ailments including neurodegenerative diseases that occur without scientific basis. This work characterized the phenolic composition, evaluated the cholinergic enzymes (acetylcholinesterase, AChE and butyrylcholinesterase, BChE) inhibition, and assessed the antioxidant activity of phenolic extracts from I. gabonensis (Aubry-Lecomte ex O'Rorke) Baill bark.

METHODS

Total phenol and flavonoids content was evaluated in addition to antioxidant activity as shown by Fe2+ chelation, 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging ability, and 2,2-azino-bis-(3-ethylbenthiazoline-6-sulfonic acid) (ABTS) radical scavenging ability. Inhibitory activities on AChE and BChE were evaluated.

RESULTS

The extract was found to be rich in phenolic acid (ellagic acid) and flavonoids (quercetrin, kaempferol, and apigenin). The phenolic extracts displayed DPPH radical scavenging ability (IC50=19.98 μg/mL), ABTS radical scavenging ability (IC50=18.25 μg/mL), iron chelation (IC50=113.10 μg/mL), and reducing power (Fe3+ to Fe2+) (5.94 mg ascorbic acid equivalent/100 g). Extracts of I. gabonensis inhibited AChE (IC50=32.90 μg/mL) and BChE (IC50=41.50 μg/mL) activities in concentration-dependent manner.

CONCLUSIONS

Hence, possible mechanism through which the stem bark executes their anti-Alzheimer's disease activity might be by inhibiting cholinesterase activities in addition to suppressing oxidative-stress-induced neurodegeneration.

摘要

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