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Functional constituents of wild and cultivated Goji (L. barbarum L.) leaves: phytochemical characterization, biological profile, and computational studies
Journal of Enzyme Inhibition and Medicinal Chemistry Cilt 32 ss. 153-168
Scopus Open Access Toplam 182 atıf DOI
Goji (Lycium barbarum L.) leaves are emphasized as a functional tea or as dietary supplements. The phenolic compound profile, antioxidant, enzyme inhibitory, antimicrobial, and antimutagenic activities of leaf extracts from two selected cultivars in comparison with wild-growing plants have been evaluated. HPLC-DAD/ESI-ToF-MS analysis revealed the presence of phenolic acids and flavonoids with chlorogenic acid and rutin being the dominant compounds in the cultivated plants, whereas rutin and kaempeferol-3-O-rutinoside for wild growing ones. In particular, cv. Erma contained the highest amount of chlorogenic acid and showed a strong tyrosinase-inhibitory effect. Staphylococcus aureus, Listeria monocytogenes, and Penicillium funiculosum were the most sensitive strains when exposed to extracts from cultivated plants. Antimutagenic activity was evaluated by Ames' test. The tested extracts provided high protection against mutagenicity induced by 2-anthramine (2-AA) to Salmonella typhimurium strains TA 98 and TA 100 (max. inhibition (%) 88% and 74.2%, respectively). Overall, Goji leaves are a rich source of bioactive compounds with functional properties that need further risk/benefit evaluation when used in foods or health-promoting formulations.
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Phytochemical characterization, in vitro and in silico approaches for three Hypericum species
New Journal of Chemistry Cilt 42 ss. 5204-5214
Scopus Havuzumuzda 77 atıf almış
Members of the Hypericum genus are spread throughout the world and have a long history of use in traditional systems of medicines. In this present investigation, the methanolic extracts of aerial parts of three Hypericum species (H. olympicum (HO), H. pruinatum (HP), and H. scabrum (HS)) growing in Turkey were investigated for their key enzyme inhibitory potential. The chemical profiles were evaluated using HPLC-ESI-MSn, and their total phenolic and flavonoid contents were established. Also, relevant bioactive compounds observed in the extracts were subjected to molecular docking experiments to provide insights into their interactions with the tested enzymes. HPLC-ESI-MSn analysis revealed that the extract of HO, followed by the HS extract, has the highest total phenolic content (38 ± 1.0 mg g-1 DE), with flavonoids as major components. The extracts showed remarkable enzyme inhibitory effects against cholinesterases (AChE and BChE-0.56-2.03 mgGALAE per g extract), tyrosinase, and α-glucosidase. Only HO (61.32 ± 3.27 mgQE per g) and HP (39.88 ± 2.51 mgQE per g) extracts showed notable inhibitory potency against lipase, while all the tested extracts exhibited modest activity against α-amylase. The phytochemicals with the most favourable interactions in the enzymatic cavity of α-glucosidase were found to be hyperoside, myricetin, and neo-chlorogenic acid, each with a docking score of -7.7. From these results, the three Hypericum species can be classified as potent sources of biologically active secondary metabolites, which warrant further investigations as novel medicinal products.
Atıf Yapan Makale Bilgileri
Kurumlar (4)
Selçuk Üniversitesi Selçuklu, Turkey
Universidad de Jaén Jaen, Spain
University of G. d'Annunzio Chieti and Pescara Chieti, Italy
University of Mauritius Reduit, Mauritius