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  4. Composition, Anti-Diabetic, and Antioxidant Potential of Raphanus sativus Leaves
 
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Composition, Anti-Diabetic, and Antioxidant Potential of Raphanus sativus Leaves

Type
Journal article
Language
English
Date issued
2024
Author
Kajszczak, Dominika
Sosnowska Dorota
Frąszczak, Barbara 
Podsędek, Anna
Faculty
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
PBN discipline
agriculture and horticulture
Journal
Molecules
ISSN
1420-3049
DOI
10.3390/molecules29235689
Web address
https://www.mdpi.com/1420-3049/29/23/5689
Volume
29
Number
23
Pages from-to
art. 5689
Abstract (EN)
Limiting and/or slowing down the starch digestion process and consequently the release of glucose can be an important strategy for the prevention of type 2 diabetes (T2D). The aim of the current in vitro study was to assess the anti-diabetic and antioxidant potential of red radish leaves of the Carmen, Jutrzenka, Saxa, and Warta cultivars. In the context of anti-diabetic activity, the effect of leaves on potato starch digestion and free glucose binding, as well as inhibitory effects of leaf extracts against α-amylase and α-glucosidase and non-enzymatic glycation (AGEs) were determined. The basic chemical composition, quantitative composition of phenolic compounds, and antioxidant activity of leaves were also estimated. This study showed that all radish leaves inhibited the breakdown of potato starch and showed their ability to bind glucose. This activity was correlated with the content of hydroxycinnamic acids, protein and dietary fiber while flavones was probably responsible for glucose binding. Leaf extracts inhibited α-glucosidase activity and formation of AGEs but were practically inactive towards α-amylase. Inhibition of α-glucosidase activity was related to the content of proanthocyanidins and inhibition of AGEs formation to flavonols. These results point to radish leaves, especially the Warta and Jutrzenka cultivars, as a potential natural remedy for treating T2D.
Keywords (EN)
  • leaves

  • red radish

  • starch digestion

  • α-amylase

  • α-glucosidase

  • AGEs

License
cc-bycc-by CC-BY - Attribution
Open access date
December 1, 2024
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