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A study on in vitro enzyme inhibitory properties of Asphodeline anatolica: New sources of natural inhibitors for public health problems
Industrial Crops and Products Cilt 83 ss. 39-43
Scopus Toplam 133 atıf DOI
Asphodeline species are traditionally used as food and medicines. The different extracts (acetone, methanol and water) from different parts (stem, root, seed and leaf) of Asphodeline anatolica were screened for inhibitory potentials on cholinesterase, tyrosinase, α-amylase and α-glucosidase. Enzyme inhibitory effects were investigated by using microplate reader. All studied extracts exhibited remarkable inhibitory effects on the tested enzymes. Generally, acetone and methanol extracts have higher potentials than water extracts. Also, the enzyme inhibitory activities of the extracts varied significantly according to the plant parts as well as the solvent used. R-Met (7.42. mgGALAEs/g extract) and St-Ac (10.74. mgGALAEs/g extract) had the highest acetylcholinesterase and butrylcholinesterase inhibitory activity, respectively. R-Met (22.48. mgKAEs/g extract) exhibited the strongest tyrosinase inhibitory effects, while Se-Ac had the most potent activity on both α-amylase (2.53. mmolACAEs/g extract) and α-glucosidase (6.70. mmolACAEs/g extract). The results suggested that the A. anatolica extract may be useful for food and medicinal applications.
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A Multi-Analytical Exploration of Flavored Black Teas: Profiling Volatile Compounds, Caffeine Content, and Biological Effects
Food Science and Nutrition Cilt 13
Scopus Havuzumuzda Open Access 2 atıf almış
This study aims at investigating the phytochemistry and biological effects of three different flavored black teas from Sweden. Analyses were conducted using gas and liquid chromatography. The major volatile compounds of all the tea samples were found to be linalyl acetate and α-terpineol. HPLC results indicated caffeine levels of 1.08%, 1.46%, and 1.18% in samples Ht1, Ht2, and Ht3, respectively. Ht1 exhibited the highest antioxidant activity, particularly in DPPH· and ABTS+ radical scavenging capacities (0.15 and 0.21 mgTE/g, respectively). Additionally, Ht1 also showed higher antioxidant activity than the other samples in both CUPRAC and FRAP tests. Metal chelation capacity was highest in Ht3, suggesting significant chelation potential due to nonphenolic components. Ht1 showed strong inhibitory activity against acetylcholinesterase (1.21 mg GALAE/g), butyrylcholinesterase (3.48 mg GALAE/g), and tyrosinase (1.47 mg KAE/g) enzymes. It highlights valuable insights into how different flavor additives may influence the health benefits of tea.
Atıf Yapan Makale Bilgileri
Kurumlar (4)
Anadolu Üniversitesi Eskisehir, Turkey
İstanbul Medipol Üniversitesi Istanbul, Turkey
İzmir Kâtip Çelebi Üniversitesi Izmir, Turkey
Selçuk Üniversitesi Selçuklu, Turkey