Kurumun Atıf Alan Makalesi
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Two Ganoderma species: Profiling of phenolic compounds by HPLC-DAD, antioxidant, antimicrobial and inhibitory activities on key enzymes linked to diabetes mellitus, Alzheimer's disease and skin disorders
Scopus
Toplam 140 atıf DOI
This work reports the antioxidant, antimicrobial, and inhibitory effects of methanol and water extracts from Ganoderma applanatum (GAM: methanol extract and GAW: water extract) and G. resinaceum (GRM: methanol extract and GRW: water extract) against cholinesterase, tyrosinase, α-amylase and α-glucosidase. The total phenolics, flavonoids contents, and HPLC profile of phenolic components present in the extracts, were also determined. Antioxidant activities were investigated by using different assays, including DPPH, ABTS, FRAP, CUPRAC, phosphomolybdenum and metal chelating assays. Antimicrobial activity of the tested Ganoderma extracts was also studied by the broth microdilution method. Generally, the highest antioxidant (59.24 mg TEs per g extract for DPPH, 41.32 mg TEs per g extract for ABTS, 41.35 mg TEs per g extract for CUPRAC, 49.68 mg TEs per g extract for FRAP, 130.57 mg AAEs per g extract for phosphomolybdenum and 26.92 mg EDTAEs per g extract) and enzyme inhibitory effects (1.47 mg GALAEs per g extract for AChE, 1.51 mg GALAEs per g extract for BChE, 13.40 mg KAEs per g extract for tyrosinase, 1.13 mmol ACEs per g extract for α-amylase and 2.20 mmol ACEs per g extract for α-glucosidase) were observed in GRM, which had the highest concentrations of phenolics (37.32 mg GAEs g-1 extract). Again, Ganoderma extracts possess weak antibacterial and antifungal activities. Apigenin and protocatechuic acid were determined as the main components in GRM (1761 μg per g extract) and GAM (165 μg per g extract), respectively. The results suggest that the Ganoderma species may be considered as a candidate for preparing new food supplements and can represent a good model for the development of new drug formulations.
Atıf Kaynağı
Atıf Yapan Yayın
Amylase, glucosidase, tyrosinase, and cholinesterases inhibitory, antioxidant effects, and GC-MS analysis of wild mint (Mentha longifolia var. calliantha) essential oil: A natural remedy
Scopus
Havuzumuzda 87 atıf almış
Introduction: Mint is used as a herbal tea, in food additives, and as a traditional medicine all around the world. They are popular functional foods and natural remedies. A comprehensive bioactivity evaluation was performed on wild mint essential oil to shed light on its health beneficial effects and therapeutic potential as a very popular herb. Methods: The chemical composition of essential oil of wild mint (Mentha longifolia var. calliantha (Stapf) Briq.) was determined together with its antioxidant and enzyme inhibitory potential linked to Alzheimer's disease, diabetes mellitus, and skin disorders. Six different methods were employed to examine antioxidant ability, including; DPPH, ABTS, CUPRAC, FRAP, metal chelating, and Molybdenum total antioxidant assays. Results: Findings showed that 1,8-cineol (33.5%), linalool (15.1%), menthone (12.9%), and trans-piperitone oxide (12.6%) are the main volatile compounds of the plant. The essential oil exhibited promising antiradical activity (5.8 and 9.1 mmol TEs/g oil in DPPH and ABTS assays, respectively) and reducing power (102 and 337 mmol TEs/g oil in FRAP and CUPRAC assays, respectively). Moreover, remarkable antidiabetic, anticholinesterase, and antityrosinase effects were recorded for the mint oil. Conclusion: Wild mint essential oil has valuable bioactive constituents and great potential for uses in food, pharmaceutical, and cosmeceuticals industries.
Atıf Yapan Makale Bilgileri
Kurumlar (5)
Biotechnology Research Center,Tabriz
Tabriz, Iran
Imam Khomeini International University
Qazvin, Iran
Maragheh University of Medical Sciences
Maragheh, Iran
Selçuk Üniversitesi
Selçuklu, Turkey
Shahid Beheshti University
Tehran, Iran