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Kurum makalesi · Scopus üzerinden alınan atıf kaydı

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Phenolic profiling and in vitro bioactivity of Moringa oleifera leaves as affected by different extraction solvents
Food Research International Cilt 127
Scopus Toplam 122 atıf DOI
In this work the (poly)-phenolic profile of Moringa oleifera leaves was comprehensively investigated through untargeted metabolomics, following a homogenizer-assisted extraction (HAE) using three solvent systems, i.e. methanol (HAE-1), methanol-water 50:50 v/v (HAE-2) and ethyl acetate (HAE-3). This approach allowed to putatively annotate 291 compounds, recording mainly flavonoids and phenolic acids. Thereafter, antioxidant capacity, antimicrobial activity and enzyme inhibition were assayed in the different extracts. HAE-1 extract showed the highest total phenolic content (31.84 mg/g), followed by HAE-2 (26.95 mg/g) and HAE-3 (14.71 mg/g). In addition, HAE-1 and HAE-2 extracts exhibited an expressive activity against Bacillus cereus and Listeria innocua. The HAE-2 leaf extract was characterized by the highest DPPH and ABTS values (being 49.55 and 45.26 mgTE/g), while ferric reducing antioxidant power was found to be higher in HAE-1 (58.26 mgTE/g). Finally, the enzyme inhibitory effects of M. oleifera leaf extracts were investigated against five enzymes, namely acetylcholinesterase (AChE), butyrylcholinesterase (BChE), tyrosinase, α-amylase and α-glucosidase. All of the tested extracts exhibited inhibitory effects on AChE and BChE with a higher activity for HAE-3 and HAE-1, whilst HAE-1 showed the higher impact on tyrosinase, glucosidase and amylase activities. Taken together, these findings suggest that M. oleifera leaf extracts are a good source of bioactive polyphenols with a potential use in food and pharma industries.
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Atıf Yapan Yayın
Moringa (Moringa oleifera L.) seed: Heating, oil, physico-chemical and bioactive properties, phenolic compounds and fatty acid profiles
South African Journal of Botany Cilt 190 ss. 61-67
Scopus Havuzumuzda
The peroxide numbers of moringa oil samples were examined between 2.50 (microwave) and 4.00 meqO2/kg (Oven). The primary (K232) and secondary oxidation (K270) values of heat-treated moringa oils were different from the control. Total carotenoid contents of moringa oils were assigned between 0.11 (microwave) and 2.50 µg/g (control). Total phenolic and flavonoid contents of unheated (raw-control) and heated moringa oils were characterized to be between 1.25 (control) and 2.39 mgGAE/100 ml (oven) to 0.07 (oven) and 0.16 mg/100 ml (microwave), respectively. The gallic acid and protocatechuic acid contents of the moringa oils were determined between 4.89 (control) and 9.10 mg/100 ml (Microwave) and 4.35 (Microwave) and 6.10 mg/100 ml (control), respectively. The quercetin content of the oils varied between 13.40 (microwave) and 14.68 mg/100 ml (oven). Oleic acid amounts of the unheated and heated moringa oils were characterized to be between 73.11 (oven) and 82.10% (control).
Atıf Yapan Makale Bilgileri
Kurumlar (3)
King Saud University Riyadh, Saudi Arabia
North Dakota State University Fargo, United States
Selçuk Üniversitesi Selçuklu, Turkey