Contribution to Pharmacological Valorisation of Algerian Arctium minus (Hill) Bernh. Subsp. Atlanticum (Pomel) Maire; Antioxidant an d Acetylcholinesterase Inhibitory Activities

Author:

Guettaf Sofiane1ORCID,Benmerzoug Abdelmoumen1,Chawki Bensouici2,Çakmak Yavuz Selim3,Dahamna Saliha4,Baghiani Abderrahmane5,Harzallah Daoud1

Affiliation:

1. Laboratory of Applied Microbiology, Faculty of Nature and Life Sciences, Ferhat Abbas University, Sétif, Algeria

2. Biotechnology Research Center (CRBT), Ali Mendjli New Town UV 03, BP E73, Constantine, Algeria

3. Department of Biotechnology and Molecular Biology, Faculty of Science and Letters, Aksaray University, 68100 Aksaray, Turkey

4. Laboratory of Phytotherapy Applied to Chronic Diseases, Faculty of Nature and Life Sciences, Ferhat Abbas University, Sétif, Algeria

5. Laboratory of Applied Biochemistry, Faculty of Nature and Life Sciences, Ferhat Abbas University, Sétif, Algeria

Abstract

Background: The traditional pharmacopoeia is full of potential resources for molecules with therapeutic effects involving the inhibition of enzymes linked to some diseases. Objective: This work aimed to test in vitro neuroprotective activity against Alzheimer's disease (AD) combined with the antioxidant effect of root extracts obtained by water, water/methanol, and ethyl acetate of the endemic Arctium minus. subsp. Atlanticum, a native of Algeria. Methods: The different extracts of the root of the studied plant were obtained by decoction or maceration. The inhibitory effect of acetyl/butyrylcholinesterase (AChE/BChE) was achieved by a colorimetric method. Similarly, the antioxidant activity was measured based on several mechanisms: 1, 1- diphenyl-2-picryl-hydrazyl (DPPH) and galvinoxyl (GOR) radicals free scavenging assays, β-carotene bleaching inhibition activity, and cupric ion reducing antioxidant capacity (CUPRAC). Results: In the various tests carried out, the ethyl acetate extract (EAE) possessed the most powerful antioxidant and anticholinesterase activities compared to the other samples. The IC50 and A0.5 values of DPPH, GOR, β-carotene, CUPRAC, anti-AChE, and anti-BChE assays were 69.45±5.49, 28.87±0.18, 121.58±16.76, 37.41±1.59, 265±21, and 240±6.3 μg / mL, respectively. Likewise, a correlation could be deduced between the type of extract and the potent antioxidant/anticholinesterase potential. Conclusion: This work examines for the first time the anticholinesterase potential combined with the antioxidant effect of Algerian Arctium minus. subsp. atlanticum. This association between the two effects could be effective in the fight against AD, and therefore, the use of this natural resource may be possible in combating this aspect of neurodegeneration.

Funder

Algerian Ministry of Higher Education and Scientific Research (MESRS) for the PRFU Project

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery,Molecular Medicine,Biochemistry

Reference53 articles.

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3. LaFerla F.M.; Oddo S.; Alzheimer’s disease: Abeta, tau and synaptic dysfunction. Trends Mol Med 2005,11(4),170-176

4. Hoogenraad T.U.; Paradigm shift in treatment of Alzheimer’s disease: Zinc therapy now a conscientious choice for care of individual patients. Int J Alzheimers Dis 2011,2011

5. Tetu D.; Facteurs génétiques et stress oxydatif impliqués dans la maladie d’Alzheimer. Grenoble: PhD Thesis, pharmacy Faculty 2005

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