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Screening of in vitro antioxidant and enzyme inhibitory activities of different extracts from two uninvestigated wild plants: Centranthus longiflorus subsp. longiflorus and Cerinthe minor subsp. auriculata
European Journal of Integrative Medicine Cilt 8 ss. 286-292
Scopus Toplam 129 atıf DOI
Introduction The importance of plants products in traditional medicine has been recognized for some time. Two plants of Turkish origin, Centranthus longiflorus subsp. longiflorus and Cerinthe minor subsp. auriculata used as traditional Turkish medicine have remained uninvestigated for Alzheimer diseases and diabetes mellitus for their in vitro biological activity despite their use for sleep disorders. The antioxidant and enzyme inhibitory properties of these plants have not been reported. The aim of this study was to determine the total phenolics, flavonoids, and antioxidant as well as their enzyme inhibitory activity (in aqueous and solvent extracts). Methods Antioxidant assays used standard methods to assess phosphomolybdenum, free radical scavenging activity, reducing power, and metal chelating activity on ferrous ions. Additionally, the extracts were tested also for enzyme inhibitory activity (Cholinesterase, Tyrosinase, α-amylase, and α-glucosidase). Results Organic extracts showed the highest anti-cholinesterase (AChE, and BChE) activity, while aqueous extracts showed valuable Tyrosinase inhibitory activity. Total phenolics (expressed as gallic acid equivalents) in C. longiflorus subsp. longiflorus and C. minor subsp. auriculata were 46.2 and 25.4 mg in methanolic extracts, 27.5 and 26.2 mg in ethyl acetate extracts, and 37.9 and 46.6 mg in aqueous extracts, respectively. Similarly, total flavonoids (expressed as rutin equivalents) in C. longiflorus subsp. longiflorus and C. minor subsp. auriculata were 39.9 and 27.8 mg in methanolic extracts, 17.6 and 52.4 mg in ethyl acetate extracts, and 24.35 and 24.6 mg in aqueous extracts, respectively. Conclusion The reported results may be valuable for preparing new food supplements and can represent a good model for the development of new drug formulations.
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Delving into the phytochemical constituents and biological activities of Scorzonera coriacea extracts: new perspectives from in vitro and in silico studies
Records of Natural Products Cilt 20
Scopus Havuzumuzda Open Access 2 atıf almış
The current study was designed to investigate the chemical composition, antioxidant, enzyme inhibitory, and cytotoxic activities of Scorzonera coriacea A.Duran & Aksoy. Both organs were rich in total phenolic content, with the highest content recorded from the 70% EtOH (48.41 mg GAE/g) and aqueous (47.11 mg GAE/g) extracts of the roots. All aerial parts extracts accumulated higher total flavonoid content than their respective roots extracts, with the highest amount found in their EtOH extract (36.44 mg RE/g). Chemical analysis revealed the presence of 86 compounds belonging to organic acids, phenolic acids, flavonoids, coumarins, anthocyanins, terpenes, saponins, and fatty acids and their derivatives, with the aerial parts accumulating the highest number. The roots displayed the strongest antiradical and ion-reducing capacities. EtOH extract of both organs recorded the highest acetylcholinesterase activity (2.77 and 3.02 mg GALAE/g; p ≥ 0.05), while that of the root showed the best butyrylcholinesterase activity (3.49 mg GALAE/g) and that of the aerial parts the best tyrosinase inhibitory (59.07 mg KAE/g). EtOAc of the root exhibited the best cytotoxicity towards the HepG2 cell line (cell viability = 29.30%), but was also toxic towards HEK293 cells (cell viability = 11.72%). In silico screening supported these findings by identifying multiple strong ligand–protein interactions. Molecular dynamics simulations further confirmed the structural stability of selected complexes. In silico profiling docked 26 phytochemicals against 14 therapeutic targets, generating 364 complexes, of which 62% showed ΔG ≤ −7.0 kcal⋅mol−1. Binding energies ranged from −1.4 to −10.7 kcal⋅mol−1, with PD-1–Eriodictyol-7-O-neohesperidoside the best. For metabolic enzymes, Eriodictyol-7-O-neohesperidoside yielded the top α-amylase score and Diosmetin-7-O-glucoside the top α-glucosidase score, while several flavonoids bound AChE/BChE strongly; in contrast, tyrosinase displayed poor affinity overall. 100-ns MD simulations on five top complexes indicated stable behavior for C1 and C4, whereas C2/C3/C5 showed loosening interactions over time. These findings showed that S. coriacea could be a promising source of bioactive compounds with potential therapeutic applications.
Atıf Yapan Makale Bilgileri
Kurumlar (8)
Ain Shams University Cairo, Egypt
Faculty of Pharmacy, Ain Shams University Cairo, Egypt
Harran Üniversitesi Sanliurfa, Turkey
Khartoum University Khartoum, Sudan
School of Pharmacy Badr, Egypt
Selçuk Üniversitesi Selçuklu, Turkey
Universidade do Algarve Faro, Portugal
Usak University Usak, Turkey