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Kurum makalesi · Scopus üzerinden alınan atıf kaydı

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Ethnopharmacology, phytochemistry, and global distribution of mangroves-a comprehensive review
Marine Drugs Cilt 17
Scopus Open Access Toplam 158 atıf DOI
Mangroves are ecologically important plants in marine habitats that occupy the coastlines of many countries. In addition to their key ecological importance, various parts of mangroves are widely used in folklore medicine and claimed to effectively manage a panoply of human pathologies. To date, no comprehensive attempt has been made to compile and critically analyze the published literature in light of its ethnopharmacological uses. This review aims to provide a comprehensive account of the morphological characteristics, ethnobotany, global distribution, taxonomy, ethnopharmacology, phytochemical profiles, and pharmacological activities of traditionally used mangroves. Out of 84 mangrove species, only 27 species were found to be traditionally used, however not all of them are pharmacologically validated. The most common pharmacological activities reported were antioxidant, antimicrobial, and antidiabetic properties. Mangroves traditionally reported against ulcers have not been extensively validated for possible pharmacological properties. Terpenoids, tannins, steroids, alkaloids, flavonoids, and saponins were the main classes of phytochemicals isolated from mangroves. Given that mangroves have huge potential for a wide array of medicinal products and drug discovery to prevent and treat many diseases, there is a dire need for careful investigations substantiated with accurate scientific and clinical evidence to ensure safety and efficient use of these plants and validate their pharmacological properties and toxicity.
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Atıf Yapan Yayın
Identification of chemical profiles and biological properties of rhizophora racemosa g. Mey. extracts obtained by different methods and solvents
Antioxidants Cilt 9 ss. 1-37
Scopus Havuzumuzda Open Access 24 atıf almış
Mangrove forests exemplify a multifaceted ecosystem since they do not only play a crucial ecological role but also possess medicinal properties. Methanolic, ethyl acetate and aqueous leaf and bark extracts were prepared using homogenizer‐assisted extraction (HAE), infusion and maceration (with and without stirring). The different extracts were screened for phytochemical profiling and antioxidant capacities in terms of radical scavenging (DPPH, ABTS), reducing potential (CUPRAC, FRAP), total antioxidant capacity and chelating power. Additionally, R. racemosa was evaluated for its anti‐diabetic (α‐amylase, α‐glucosidase), anti‐tyrosinase and anti‐cholinesterase (AChE, BChE) activities. Additionally, antimycotic and antibacterial effects were investigated against Eescherichia coli, Pseudomonas aeruginosa, Salmonella typhimurium, Listeria monocytogenes, Enterobacter cloacae, Bacillus cereus, Micrococcus luteus, Staphylococcus aureus, Aspergillus fumigatus, Aspergillus niger, Trichoderma viride, Penicillium funiculosum, Penicillium ludwigii and Penicillium verrucosum. Finally, based on phytochemical fingerprint, in silico studies, including bioinformatics, network pharmacology and docking approaches were conducted to predict the putative targets, namely tyrosinase, lanosterol‐14‐α‐demethylase and E. coli DNA gyrase, underlying the observed biopharmacological and microbiological effects. The methanolic leave and bark extracts (prepared by both HAE and maceration) abounded with phenolics, flavonoids, phenolic acids and flavonols. Results displayed that both methanolic leaf and bark extracts (prepared by HAE) exhibited thehighest radical scavenging, reducing potential and total antioxidant capacity. Furthermore, our findings showed that the highest enzymatic inhibitory activity recorded was with the tyrosinase enzyme. In this context, bioinformatics analysis predicted putative interactions between tyrosinase and multiple secondary metabolites including apigenin, luteolin, vitexin, isovitexin, procyanidin B, quercetin and methoxy‐trihydroxyflavone. The same compounds were also docked against lanosterol‐14α‐demethylase and E. Coli DNA gyrase, yielding affinities in the submicromolar– micromolar range that further support the observed anti‐microbial effects exerted by the extracts. In conclusion, extracts of R. racemosa may be considered as novel sources of phytoanti‐oxidants and enzyme inhibitors that can be exploited as future first‐line pharmacophores.
Atıf Yapan Makale Bilgileri
Kurumlar (10)
Duy Tan University Da Nang, Viet Nam
Salahaddin University-Erbil Erbil, Iraq
School of Pharmaceutical Sciences, Universiti Sains Malaysia Gelugor, Malaysia
Selçuk Üniversitesi Selçuklu, Turkey
Università degli Studi di Perugia Perugia, Italy
Université Félix Houphouët-Boigny Abidjan, Cote d'Ivoire
University of Belgrade Belgrade, Serbia
University of G. d'Annunzio Chieti and Pescara Chieti, Italy
University of Mauritius Reduit, Mauritius
University of Nyíregyháza Nyíregyháza, Hungary