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Anti-diabetic and anti-hyperlipidemic properties of Capparis spinosa L.: In vivo and in vitro evaluation of its nutraceutical potential
Scopus
Toplam 151 atıf DOI
In this study, the nutraceutical potential of Capparis spinosa L. for the treatment of hyperglycemic states has been thoroughly investigated. A series of in vivo and in vitro tests have been conducted on fresh leaf, buds and salty buds (24 h desalted) processed to dry powder. 60% MeOH/H2O extracts were obtained for HPLC analysis and for α-amylase and α-glucosidase inhibition tests. To estimate the in vivo anti-diabetic effect, dry powders of C. spinosa leaf and buds were orally administered to streptozocin-induced diabetic rats over a period of 28 days. At the end of the experiment, animals were sacrificed, blood taken for assessment of lipid profile and liver/kidney biochemistry while section of the pancreas, liver and kidneys were processed for general histology. Results showed that the regular administration of C. spinosa leaf or buds normalized all the biochemical parameters and reversed the liver/kidney injury with variable degrees of organ protection.
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New insights into the chemical profiling, cytotoxicity and bioactivity of four Bunium species
Scopus
Havuzumuzda 21 atıf almış
Bunium species have been reported to be used both as food and in traditional medicines. The scientific community has attempted to probe into the pharmacological and chemical profiles of this genus. Nonetheless, many species have not been investigated fully to date. In this study, we determined the phenolic components, antimicrobial, antioxidant, and enzyme inhibitory activities of aerial parts of four Bunium species (B. sayai, B. pinnatifolium, B. brachyactis and B. macrocarpum). Results showed that B. microcarpum and B. pinnatifolium were strong antioxidants as evidenced in the DPPH, ABTS, CUPRAC, and FRAP assays. B. brachyactis was the most effective metal chelator, and displayed high enzyme inhibition against cholinesterase, tyrosinase, amylase, glucosidase, and lipase. The four species showed varied antimicrobial activity against each microorganism. Overall, they showed high activity against P. mirabilis and E. coli (MIC and MBC <1 mg mL−1). B. brachyactis was more effective against Aspergillus versicolor compared to the standard drug ketoconazole. B. brachyactis was also more effective than both ketoconazole and bifonazole against Trichoderma viride. B. sayai was more effective than ketoconazole in inhibiting A. fumigatus. B. sayai was most non-toxic to HEK 293 (cellular viability = 117%) and HepG2 (cellular viability = 104%). The highest level of TPC was observed in B. pinnatifolium (35.94 mg GAE g−1) while B. microcarpum possessed the highest TFC (39.21 mg RE g−1). Seventy four compounds were detected in B. microcarpum, 70 in B. brachyactis, 66 in B. sayai, and 51 in B. pinnatifolium. Quinic acid, chlorogenic acid, pantothenic acid, esculin, isoquercitrin, rutin, apigenin, and scopoletin were present in all the four species. This study showed that the four Bunium species are good sources of biologically active compounds with pharmaceutical and nutraceutical potential.
Atıf Yapan Makale Bilgileri
Kurumlar (7)
Munzur Üniversitesi
Tunceli, Turkey
Pavol Jozef Šafárik University in Košice
Kosice, Slovakia
Selçuk Üniversitesi
Selçuklu, Turkey
Universidade do Algarve
Faro, Portugal
University of Belgrade
Belgrade, Serbia
University of Mauritius
Reduit, Mauritius
University of Nyíregyháza
Nyíregyháza, Hungary