Relationships between betalains, phenolic compounds and bioactivity in selected plant matrices

Abstract Betalain-rich fruits and vegetables are recognised as important sources of bioactive compounds; however, the relative contributions of betalains and co-occurring polyphenols to antiglycation and enzyme inhibitory activities remain insufficiently understood. This study comparatively evaluated six betalain-rich plant matrices (yellow and pink pitaya, yellow and red prickly pear, red Swiss chard, and red beetroot) to characterise their phytochemical compositions and associated biological activities. UHPLC-DAD-MS analysis identified forty-two betalains and thirteen polyphenols, alongside the total phenolic and flavonoid contents. Antioxidant capacity, α-amylase and α-glucosidase inhibition, and suppression of advanced glycation end-products (AGEs) were assessed using glucose- and methylglyoxal-based model systems. Red prickly pear showed the highest betalain content (33.30 mg/g dm), whereas pink pitaya exhibited the highest phenolic content. Red Swiss chard exibited the strongest antiglycation activity (84.70% and 30.17% in the BSA-GLU and BSA-MGO models, respectively), whereas pink pitaya showed the highest inhibition of α-amylase (39.27%) and α-glucosidase (17.51%). Red beetroot and Swiss chard exhibited the highest antioxidant capacities. The results indicate that betalains are more strongly associated with the inhibition of glucose-derived glycation, whereas polyphenols contribute predominantly to methylglyoxal-derived glycation and enzyme inhibition. These findings highlight the importance of phytochemical composition in determining the functional properties of selected plant matrices.

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Publication Details

Journal
European Food Research and Technology
Published
2026-09-27
DOI
https://doi.org/10.1007/s00217-026-05322-2
Primary Topic
Botanical Research and Applications
Type
article
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Relationships between betalains, phenolic compounds and bioactivity in selected plant matrices

Monika Jabłońska, Wioletta Błaszczak, Tomasz Sawicki
European Food Research and Technology
Botanical Research and Applications
article

Relationships between betalains, phenolic compounds and bioactivity in selected plant matrices

Monika Jabłońska, Wioletta Błaszczak, Tomasz Sawicki
article en

Abstract

Abstract Betalain-rich fruits and vegetables are recognised as important sources of bioactive compounds; however, the relative contributions of betalains and co-occurring polyphenols to antiglycation and enzyme inhibitory activities remain insufficiently understood. This study comparatively evaluated six betalain-rich plant matrices (yellow and pink pitaya, yellow and red prickly pear, red Swiss chard, and red beetroot) to characterise their phytochemical compositions and associated biological activities. UHPLC-DAD-MS analysis identified forty-two betalains and thirteen polyphenols, alongside the total phenolic and flavonoid contents. Antioxidant capacity, α-amylase and α-glucosidase inhibition, and suppression of advanced glycation end-products (AGEs) were assessed using glucose- and methylglyoxal-based model systems. Red prickly pear showed the highest betalain content (33.30 mg/g dm), whereas pink pitaya exhibited the highest phenolic content. Red Swiss chard exibited the strongest antiglycation activity (84.70% and 30.17% in the BSA-GLU and BSA-MGO models, respectively), whereas pink pitaya showed the highest inhibition of α-amylase (39.27%) and α-glucosidase (17.51%). Red beetroot and Swiss chard exhibited the highest antioxidant capacities. The results indicate that betalains are more strongly associated with the inhibition of glucose-derived glycation, whereas polyphenols contribute predominantly to methylglyoxal-derived glycation and enzyme inhibition. These findings highlight the importance of phytochemical composition in determining the functional properties of selected plant matrices.

European Food Research and TechnologyVol. 252(10)
Openalex Percentile: Top 14%
Botanical Research and Applications
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