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A comprehensive study on phytochemical characterization of Haplophyllum myrtifolium Boiss. endemic to Turkey and its inhibitory potential against key enzymes involved in Alzheimer, skin diseases and type II diabetes
Scopus
Toplam 222 atıf DOI
The interest of medicinal plants as therapeutic agents against diseases such as Alzheimer, skin disorders and diabetes mellitus is growing. In order to investigate the influence of Haplophyllum myrtifolium, four solvent extracts (petroleum ether, ethyl acetate, methanol and water) were screened for antioxidant potentials, anti-cholinesterase, anti-tyrosinase, anti-amylase and anti-glycosidase activity. Antioxidant effects were elucidated by different assays including free radical scavenging (ABTS, DPPH and NO assay), reducing power (FRAP and CUPRAC), phosphomolybdenum, β-carotene/linoleic acid system and metal chelating. Total phenolic, flavonoid, flavanol, tannin and saponin contents in these extracts were also calculated. Generally, ethyl acetate extract showed the strongest antioxidant activity in these extracts. This activity may be related to a good total phenolic content. The total phenolic contents of these extracts ranged from 32.32 to 52.50. mg GAEs/g extract. Except for water extract, all extracts showed good inhibitory activities on cholinesterase, tyrosinase, amylase and glycosidase. Apolar extracts (petroleum ether and ethyl acetate) were more potent as enzyme inhibitors in comparison to polar extracts (methanol and water). These findings reveal that H. myrtifolium could be used a source of natural compounds for the management of oxidative damage, Alzheimer, skin disorders and diabetes mellitus. © 2014 Elsevier B.V.
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A Comparative Study of Chamomile Essential Oils and Lipophilic Extracts Obtained by Conventional and Greener Extraction Techniques: Chemometric Approach to Chemical Composition and Biological Activity
Scopus
Havuzumuzda Open Access 27 atıf almış
Bearing in mind the centuries-old traditional use of chamomile, but also the increasing demand for its products in modern industry, oriented toward sustainable development, there are increasing efforts for the efficient extraction of high-value compounds of this plant, as well as obtaining its products with added value. With that goal, conventional and contemporary separation techniques were applied in this work. Both hydrodistillation processes (HD), conducted in a traditional manner and coupled with microwave irradiation (MWHD), were used for essential oil isolation. In parallel with those procedures, chamomile lipophilic extracts were obtained by Soxhlet extraction applying organic solvents and using supercritical fluid extraction as a greener approach. The obtained extracts and essential oils were characterized in terms of chemical composition (GC analysis, contents of total phenolics and flavonoids) and biological potential. GC analysis revealed that oxygenated sesquiterpenes and non-terpene compounds were the dominant compounds. α-Bisabolol oxide A (29.71–34.41%) and α-bisabolol oxide B (21.06–25.83%) were the most abundant individual components in samples obtained by distillation while in supercritical and Soxhlet extracts, major compounds were α-bisabolol oxide A and pentacosane. The biological potential of essential oils and extracts was tested by applying a set of analyzes to estimate the inhibition of biologically important enzymes (amylase, glucosidase, acetylcholinesterase, butyrylcholinesterase, tyrosinase) and antioxidant capacity (DPPH, ABTS, CUPRAC, FRAP, chelating and total antioxidant capacity). The results suggested essential oils as better antioxidants, while the extracts were proven to be better inhibitors of the tested enzymes. Principal Component Analysis was conducted using the experimental results of the composition of extracts and EOs of chamomile obtained by different separation techniques, showing clear discrimination between methods applied in correlation with the chemical profile. Molecular docking was applied for the identification of the main active principles present in the essential oil, among which α-bisabolol-oxide B (cp3) showed a higher affinity for tyrosinase.
Atıf Yapan Makale Bilgileri
Kurumlar (5)
Chinese Academy of Forestry
Beijing, China
Selçuk Üniversitesi
Selçuklu, Turkey
University of Belgrade
Belgrade, Serbia
University of G. d'Annunzio Chieti and Pescara
Chieti, Italy
University of Novi Sad
Novi Sad, Serbia