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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 130 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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Phytochemical composition and in -vitro pharmacological evaluation of Emex australis Steinh: A natural source of enzyme inhibitors
South African Journal of Botany Cilt 143 ss. 374-381
Scopus Havuzumuzda Open Access 13 atıf almış
The current research investigated the chemical profiling and biological activities of Emex australis Steinh. aerial and fruit parts (methanol and dichloromethane-DCM extracts). Chemical composition was established by determining the amounts of phenolic and flavonoid contents, HPLC-PDA polyphenolic quantification, and UHPLC-MS secondary metabolites profiling to understand the observed biological activities. Antioxidant evaluation was performed utilizing six different assays (DPPH, ABTS, FRAP, CUPRAC, phosphomolybdenum, and metal chelation). Moreover, enzyme inhibition abilities against cholinesterases, α-amylase, α-glucosidase, and tyrosinase were also determined. The fruit methanol extract contained the highest phenolic (157.96 mg GAE/ g extract) and flavonoid contents (41.43 mg QE/g extract), which could justify the observed significant antioxidant (except metal chelating), α-amylase, α-glucosidase, and tyrosinase inhibitory potentials. The other extracts were active against cholinesterases and tyrosinase. The HPLC-PDA polyphenolic analysis quantified a number of 11 phenolic secondary metabolites. The fruit-MeOH extract was found to quantify the maximum phenolics with catechin (4.27 μg/g extract) and gallic acid (4.84 μg/g extract) in higher amounts. Similarly, rutin present in maximum quantity in the aerial-MeOH extract (2.93 μg/g extract). Furthermore, the UHPLC-MS study of aerial and fruit methanol extracts reveals the existence of 22 secondary metabolites, most of which were flavonoid derivatives. Besides that, Pearson coefficient analysis (PCA) was also carried to determine a possible correlation between bioactive contents and observed biological assays. Thus, it is concluded that E. australis extracts contain important classes of secondary metabolites and also exhibited considerable antioxidant and inhibition potential against clinically relevant enzymes.
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Kurumlar (9)
Al Ain University Al Ain, United Arab Emirates
Bahawalpur Medical and Dental College Bahawalpur, Pakistan
Monash University Malaysia Sunway City, Malaysia
Selçuk Üniversitesi Selçuklu, Turkey
The Islamia University of Bahawalpur Bahawalpur, Pakistan
University of G. d'Annunzio Chieti and Pescara Chieti, Italy
University of Ha'il Ha'il, Saudi Arabia
University of Mauritius Reduit, Mauritius
University of Veterinary and Animal Sciences, Lahore Lahore, Pakistan