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INVESTIGATION OF ANTIOXIDANT POTENTIALS OF SOLVENT EXTRACTS FROM DIFFERENT ANATOMICAL PARTS OF ASPHODELINE ANATOLICA E. TUZLACİ: AN ENDEMIC PLANT TO TURKEY
Scopus
Open Access Toplam 186 atıf DOI
Background: The genus Asphodeline (Liliaceae) is represented in Turkey by 20 taxa, which are traditionally used for medicinal purposes in Anatolia. Materials and Methods: In this study, we tested the phytochemical content and antioxidant effect of different solvent extracts obtained from different anatomical parts of Asphodeline anatolica. The different extracts of each plant parts were tested for antioxidant activity using different chemical assays. The total antioxidant components were also calculated. Results: Generally, acetone extracts produced the seed and root exhibited significantly higher antioxidant activity with high antioxidant components. Total phenolic content of extracts were significantly correlated with antioxidant potentials (except for, metal chelating activity). Conclusion: On the basis of the results obtained, A. anatolica extracts should be regarded as a valuable source of natural antioxidants for food and therapeutic applications.
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Decoding the bioactive landscape of five Astragalus species: chromatographic fingerprints and in vitro perspectives
Scopus
Havuzumuzda
Introduction The present study was designed to evaluate the phytoconstituents, antioxidant, enzyme inhibitory, antimicrobial, and cytotoxic properties of the aerial parts and root extracts of A. amoenus, A. microcephalus , A. sterocalyx, A. tigridis , and A. yuksellii . Methods The chemical composition was evaluated by spectrophotometric methods and LC–MS-qTOF metabolomic analysis. Antioxidant properties were examined by in vitro chemical assays. The enzyme inhibitory effects were investigated using key enzymes. Antibacterial and antifungal effects were observed against various bacterial and fungal strains. DU-145 (prostate cancer), HeLa (cervical adenocarcinoma), A549 (lung adenocarcinoma), and HEK-293 (cells derived from embryonic kidney tissue) cell lines were used for evaluating cytotoxic effects. Results Metabolomic analysis revealed that hydroxybenzoic acid, hydroxycinnamic acid, and methyl glutamic acid were key metabolites in the aerial parts. In contrast, dihydrobenzoic acid, methylmalonic acid, and kaempferide were key metabolites in the root parts. Aerial parts of A. amoenus showed the highest antiradical and ion reducing properties. Roots of A. tigridis and A. microcephalus, as well as the aerial parts of A. amoenus exerted the highest acetylcholinesterase inhibition activity. Escherichia coli (ATCC 10536) showed the highest sensitivity towards A . yuksellii roots, while its aerial parts displayed significant antifungal activity against Candida albicans (YEPGA 6379), C. parapsilosis (YEPGA 6551), and C. tropicalis (DBVPG 6184). A. microcephalus, A. tigridis, and A. amoenus were toxic to the A549, DU-145, and HELA cell lines but had a low selective index (<1). Conclusion In conclusion, the five Astragalus species studied show strong potential as sources of bioactive molecules for diverse food and pharmaceutical applications.
Atıf Yapan Makale Bilgileri
Kurumlar (10)
Atatürk Üniversitesi
Erzurum, Turkey
Central Hospital of Shanghai Jiading District
Shanghai, China
Czech University of Life Sciences Prague
Prague, Czech Republic
Digitalizzazione
Spoleto, Italy
Harran Üniversitesi
Sanliurfa, Turkey
Khartoum University
Khartoum, Sudan
Pavol Jozef Šafárik University in Košice
Kosice, Slovakia
Renji Hospital
Shanghai, China
Selçuk Üniversitesi
Selçuklu, Turkey
Università degli Studi di Perugia
Perugia, Italy