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Chemical Characterisation-Biological Evaluation of Greek Cultivar Cardoon Seeds (Cynara cardunculus)A By-product with Potential High Added Value

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Autore
Graikou K., Kourti P.-M., Zengin G., Gortzi O., Danalatos N., Chinou I.
Data
2021
Language
en
DOI
10.1055/a-1472-6336
Soggetto
3,5 dicaffeoylquinic acid
alpha glucosidase
amylase
arctigenin
arctiin
biofuel
cholinesterase
cynarinine
ethylate
galantamine
gallic acid
kojic acid
lignan
linoleic acid
monophenol monooxygenase
trachelogenin
tracheloside
trilinolein
unclassified drug
unsaturated fatty acid
antidiabetic activity
antioxidant activity
Article
biochemical analysis
cardoon
chemical fingerprinting
degenerative disease
dietary fiber
enzyme inhibition
field experiment
neuroprotection
nonhuman
nutritional value
plant metabolism
plant seed
protein content
species cultivation
artichoke
Cynara
degenerative disease
Greece
plant seed
Cynara
Cynara scolymus
Greece
Neurodegenerative Diseases
Seeds
Georg Thieme Verlag
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Abstract
Cynara cardunculus (artichoke) is a perennial plant of the Mediterranean basin, known since antiquity as food and for its therapeutic properties. Cynara is a relatively small genus with two cultivated species and one wild one. Recently, successful efforts have been made to cultivate wild cardoon and monetise it as a bioenergy crop. In this study, the seeds of an established Greek cultivar of C. cardunculus, cultivated in the experimental field and used as biofuel, have been researched for their chemical profile and nutritional value. According to the results, six lignans were isolated [arctigenin, arctiin, trachelogenin, tracheloside, cynarinine, and ethylate of trachelogenin (isolated for the first time from a natural source)] as well as the most characteristic metabolites of the genus (linoleic acid, trilinolein, and 3,5-dicaffeoylquinic acid). Moreover, the total phenolic content (31.18-54.51 mg gallic acid equivalents/g extract) and antioxidant and enzyme inhibitory activities of the seeds have been evaluated and showed strong antioxidant properties (44.42-516.81 mg gallic acid equivalents/g extract) as well as satisfactory bleaching (enzyme tyrosinase, 16.95-23.80 mg kojic acid equivalents/g extract), antidiabetic (enzymes a-amylase, a-glucosidase, 0.14-1.75 mmol acarbose equivalents/g extract), and protective against neurodegenerative disease (cholinesterase enzymes, 0.49-1.22 mg galanthamine equivalents/g extract) activities. The nutritional evaluation of the seeds confirmed them as a rich source of unsaturated fatty acids, dietary fibre (24.1%), and high protein content (19.3%). It is noteworthy that such a neglected bioactive by-product, with essentially high nutritional value, as the studied seeds could be investigated for its value-added applications towards food and food supplements areas. © 2021 Royal Society of Chemistry. All rights reserved.
URI
http://hdl.handle.net/11615/72704
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