Kurumun Atıf Alan Makalesi
Atıf Alan Yayın
Cytotoxic and enzyme inhibitory potential of two potentilla species (P. speciosa L. and P. reptans Willd.) and their chemical composition
Scopus
Open Access Toplam 345 atıf DOI
In this work, the biological and chemical fingerprints of three extracts (ethyl acetate, methanol, and water) from two Potentilla species (Potentilla reptans and P. speciosa) were investigated. Antioxidant, enzyme inhibitory, and cytotoxic activities were performed for the biological fingerprint. For the chemical characterization, total bioactive components, and individual phenolic components were determined using photometric and HPLC methods, respectively. The main identified phenolic compounds in these extracts were rutin and catechin. Methanol and water extracts contained the highest total phenolic and flavonoid content. The results of antioxidant assays showed that methanol and water extracts displayed higher antioxidant activity compared to the ethyl acetate extract. Generally, methanol and water extracts exhibited higher biological activities correlated with higher levels the bioactive components. For P. speciosa, the methanol extract exhibited the highest enzyme inhibitory activity (except BChE inhibitory activity). P. reptans exhibited also high antiproliferative activity against MCF-7 cells whilst P. speciosa had weak to moderate activity against both of A549 and MCF-7 cell lines. The results suggest that Potentilla species could be potential candidates for developing new phyto-pharmaceuticals and functional ingredients.
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Atıf Yapan Yayın
Antioxidant and Amylase, Glucosidase, and Tyrosinase Enzymes Inhibitory Potential of Genistein and 11-α-Hydroxyerysotrine Supported by In Silico and Network Pharmacology Approaches
Scopus
Havuzumuzda 2 atıf almış
The antioxidant and enzyme inhibition properties of the isoflavone genistein (1) and the alkaloid 11-α-hydroxyerysotrine (2) isolated from the leaves of Erythrina speciosa were assessed. Both compounds exhibited notable in vitro antioxidant activities; 11-α-hydroxyerysotrine (2) demonstrated stronger effects than genistein in DPPH, ABTS, CUPRAC, and FRAP assays. On the other hand, genistein (1) demonstrated a higher metal chelating activity than 11-α-hydroxyerysotrine (2). Regarding enzyme inhibition, 11-α-hydroxyerysotrine (2) inhibited both acetyl- (AchE) and butyryl- (BchE) cholinesterases, though to a lesser extent than the standard drug galanthamine. Both compounds inhibited tyrosinase, yet a good inhibition was observed for 11-α-hydroxyerysotrine (2) as compared to genistein (1). Genistein (1) showed a lower α-amylase inhibition effect (IC50: 3.43 mg/mL, p < 0.05) compared to the standard acarbose (IC50: 0.80 mg/mL). Regarding α-glucosidase inhibition, genistein (1) (IC50: 1.02 mg/mL, p < 0.05) was more active than acarbose (IC50: 1.78 mg/mL). 11-α-Hydroxyerysotrine (2) exhibited lower α-amylase (IC50: 4.09 mg/mL) and α-glucosidase (IC50: 4.48 mg/mL) inhibition effects. The in vitro biological results were further supported by network pharmacology approaches on Alzheimer's disease and in silico studies performed on AChE, BChE, tyrosinase, α-amylase, and β-glucosidase enzymes. The results of our study suggest 11-α-hydroxyerysotrine as a potential drug candidate for further investigation in managing oxidative stress-related conditions, Alzheimer's disease, and hyperpigmentation disorders.
Atıf Yapan Makale Bilgileri
Kurumlar (4)
Ain Shams University
Cairo, Egypt
Faculty of Pharmacy, Ain Shams University
Cairo, Egypt
İstanbul Arel Üniversitesi
Istanbul, Turkey
Selçuk Üniversitesi
Selçuklu, Turkey