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Wild Vitex agnus-castus L.: Phytochemical Characterization, Acute Toxicity, and Bioactive Properties.

Authors :
Boujbiha, Mohamed Ali
Chahdoura, Hassiba
Adouni, Khaoula
Ziani, Borhane Eddine Cherif
Snoussi, Mejdi
Chakroun, Yasmine
Ciudad-Mulero, María
Fernández-Ruiz, Virginia
Achour, Lotfi
Selmi, Boulbaba
Morales, Patricia
Flamini, Guido
Mosbah, Habib
Source :
Molecules. Jul2023, Vol. 28 Issue 13, p5096. 22p.
Publication Year :
2023

Abstract

Wild Vitex agnus-castus (VAC) is a Mediterranean plant that is rich in bioactive metabolites. This study aimed to validate, for the first time, the beneficial use of VAC fruits and fruit decoctions (VFDs) through in vitro and in vivo trials. Forty-one volatile components were detected in VAC fruits, with 1,8-cineole (30.3%) comprising the majority. The antioxidant activity of VFD was measured by using different in vitro methods (EC50 of 0.16 mg/mL by β-carotene bleaching inhibition assay) and by measuring the DNA protection power. Using the disc diffusion assay, the antimicrobial activity of VFD was evaluated, and it exhibited a noticeable anticandidal activity. VFD did not cause any toxicity or mortality in rats treated with doses > 200 mg/kg. Using the acetic acid writhing test, the antinociceptive activity of VFD was measured. Our results showed that VFD at 200 mg/kg exhibited a higher analgesic activity (81.68%) than acetylsalicylic acid used as a positive control (74.35%). Its gastroprotective ability was assessed by HCl/ethanol-induced gastric lesions, which were remarkably inhibited (84.62%) by intraperitoneal administration of VFD. This work helps to validate the popular use of VAC to treat nociceptive, inflammatory, and gastric disorders and encourages researchers to further investigate the identification of pharmacological compounds from this species. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
28
Issue :
13
Database :
Academic Search Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
164920456
Full Text :
https://doi.org/10.3390/molecules28135096