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In vitro enzyme inhibitory properties, antioxidant activities, and phytochemical profile of Potentilla thuringiaca
Phytochemistry Letters Cilt 20 ss. 365-372
Scopus Toplam 432 atıf DOI
The genus Potentilla is interesting for the pharmaceutical field due to its valuable medicinal properties, which have been observed in complementary and alternative medicine. In recent years, studies conducted to estimate the biological activity of several of the Potentilla species have shown a wide spectrum of therapeutic properties. In particular, in the present paper, different extracts obtained from the herb P. thuringiaca were analysed for antioxidant and enzyme inhibitory activities. The UHPLC-DAD-MS3 hyphenated techniques reported herein allow for the identification of phytoconstituents. The analyses showed the presence of flavonoids and ellagitannins as major components. Furthermore, the data demonstrated that the analysed extracts revealed a high total antioxidant capacity in the phosphomolybdenum assay. The free radical scavenging activity of the extracts was evaluated using DPPH and ABTS assays. The reducing power activity of P. thuringiaca was also determined by FRAP and CUPRAC assays, as well as metal chelating activity. In addition, the total extracts and the different fractions of P. thuringiaca revealed potent inhibitory activities against α-amylase and α-glucosidase, AChE, tyrosinase and lipase. Surprisingly, no activity against BChE was shown. P. thuringiaca could be a valuable natural source of antioxidants with interesting inhibitory actions against the key enzymes involved in several human diseases, and could represent a valid starting point for the development of new treatment and management strategies, including its use as a food supplement.
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Using a combination of in vitro and in silico approaches to explore the biological potential of Arceuthobium oxycedri extracts: innovative insights from the lab to functional applications
European Food Research and Technology Cilt 251 ss. 2445-2468
Scopus Havuzumuzda Open Access 5 atıf almış
In the present study, the antioxidant capacity, enzyme inhibitory activities, and chemical composition of various extracts from Arceuthobium oxycedri were assessed by LC-MS/MS. Extracts were further evaluated for their cytotoxicity by the resazurin reduction assay and for their antioxidant activity by qRT-PCR in liver carcinoma HepG2 cells. The LC-MS/MS indicated that in both ethanolic and ethanol/water (70%) extracts, there were highly identified phenolic compounds, and they exhibited greater antioxidant effects. These extracts exhibited potential inhibitory activities against acetylcholinesterase and butyrylcholinesterase with the values of 4.72 and 4.41 mg GALAE/g, respectively. The ethanol extract showed the highest α-glucosidase inhibitory activity, 2.19 mmol ACAE/g, probably due to its high content of proanthocyanidins and hydroxycinnamic acids. Furthermore, results demonstrate that some of the extracts significantly reduce the expression of the antioxidant gene HO-1, while γ-GCS was slightly increased. To further investigate the molecular mechanisms, network pharmacology approach was used to identify potential targets related to HO-1 and NRF2.The analysis revealed key proteins associated with oxidative stress and metabolic pathways. Subsequently, molecular docking was performed on these identified targets, along with standard enzymes such as AChE, BChE, α-amylase, αglucosidase, and tyrosinase. The best-performing protein-ligand interactions were then selected for molecular dynamics simulations. These findings enable us to infer that ethanol and ethanol/water (70%) extracts represent the most promising candidates based on their chemical composition for their medicinal importance, represented by their rich contents of phenolic and flavonoid compounds.
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Kurumlar (5)
Gottfried Wilhelm Leibniz Universität Hannover Hannover, Germany
Harran Üniversitesi Sanliurfa, Turkey
Rheinland-Pfälzische Technische Universität Kaiserslautern-Landau Kaiserslautern, Germany
Selçuk Üniversitesi Selçuklu, Turkey
University of Nyíregyháza Nyíregyháza, Hungary