Kurumun Atıf Alan Makalesi
Atıf Alan Yayın
Pharmacological insights into the multifaceted biological properties of quinic acid
Scopus
Toplam 199 atıf DOI
Quinic acid is a cyclohexanecarboxylic acid contained in the extracts of several parts of medicinal plants including Haematocarpus validus, Hypericum empetrifolium, Achillea pseudoaleppica, Rumex nepalensis, Phagnalon saxatile subsp. saxatile, Coffea arabica, Ziziphus lotus L, and Artemisia annua L … etc. Currently, in vitro and in vivo pharmacological studies showed that quinic acid exhibits various biological activities, such as antioxidant, antidiabetic, anticancer activity, antimicrobial, antiviral, aging, protective, anti-nociceptive and analgesic effects. Indeed, QA possesses an important antibacterial effect which could be explained by the fact that this molecule modules the functions of ribosomes and the synthesis of aminoacyl-tRNAs, modifications the levels of glycerophospholipids and fatty acids and disruption of the oxidative phosphorylation pathway thereby causing interference with membrane fluidity. The antidiabetic activity of AQ is achieved by stimulation of insulin secretion via the mobilization of Ca2+ from intracellular reserves and the increase in the NAD(P)H/NAD(P)+ ratio. Its anticancer effect is through the promotion of apoptosis, inhibition of activator protein 1 (AP-1) and signaling pathways involving protein kinase C (PKC) and certain mitogen-activated protein kinases (MAPKs), resulting in the downregulation of matrix metallopeptidase 9 (MMP-9) expression. Therefore, this review describes the main research work carried out on the biological properties of AQ and the mechanism of action underlying some of these effects, as well as the investigations of the main pharmacokinetic studies.
Atıf Kaynağı
Atıf Yapan Yayın
Decoding chemical profiles and biological activities of aerial parts and roots of Eryngium thorifolium Boiss by HPLC-MS/MS, GC-MS and in vitro chemical assays
Scopus
Havuzumuzda 34 atıf almış
Eryngium species are widely distributed and primarily utilised for medicinal and culinary purposes. This study aimed to evaluate the chemical composition, antioxidant, enzyme inhibition, and cytotoxic properties of various extracts from the aerial parts and roots of E. thorifolium Boiss. The chemical composition of ethyl acetate, methanol, and water extracts was analysed using High-Performance Liquid Chromatography-Electrospray Ionization Tandem Mass Spectrometry (HPLC-ESI-MS/MS), while the hexane ones were examined using Gas Chromatography-Mass Spectrometry (GC-MS) analysis. The most predominant class of secondary metabolites identified were fatty acid amides and flavonoids as hexose conjugates. Extracts from the aerial parts exhibited the highest antioxidant activity, with the methanol and water extracts showing the best anti- 2,2-diphenyl-1-picrylhydrazyl (DPPH) (21.9 mg trolox equivalent (TE)/g) and anti- 2,2′-Azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) (89.26 mg TE/g) activities. Enzyme inhibition tests revealed that the hexane extract from the roots had the highest anti-acetylcholinesterase activity (2.49 mg galantamine equivalent (GALAE)/g). Additionally, both the hexane and ethyl acetate extracts from the aerial parts demonstrated the highest anti-butyrylcholinesterase activity (3.13 and 3.71 mg GALAE/g, p ≥ 0.05). At a concentration of 100 μg/mL, all extracts from the roots and aerial parts, except the water one, displayed potent cytotoxicity against the human embryonic (HEK 293) and murine macrophages (RAW 264.7) cell lines, with cellular viability ranging from 1.66 to 2.62% compared to the control (0.5% DMSO) (89.2 and 95.1%, respectively). Through network pharmacology and molecular docking, the phytochemicals of E. thorifolium show significant potential as natural compounds targeting key proteins involved in cancer progression, including Bcl-2, c-KIT, PI3K, and AKT. Their binding affinities and predicted interactions highlight their possible therapeutic applications in managing various cancers. These findings suggested E. thorifolium is a promising source of phytochemicals targeting specific oxidative stress-linked diseases, including cancer, diabetes and neurodegenerative disorders.
Atıf Yapan Makale Bilgileri
Kurumlar (10)
Ain Shams University
Cairo, Egypt
Balikesir Üniversitesi
Balikesir, Turkey
Faculty of Pharmacy, Ain Shams University
Cairo, Egypt
Khartoum University
Khartoum, Sudan
Ponnaiya's Code and Genome Pvt Ltd
Madurai, India
School of Pharmacy
Badr, Egypt
Selçuk Üniversitesi
Selçuklu, Turkey
Universidade do Algarve
Faro, Portugal
Università degli Studi di Padova
Padua, Italy
Université de Lorraine
Nancy, France