Membrane permeabilizers enhance biofortification of Brassica microgreens by interspecific transfer of metabolites from tea (Camellia sinensis)

[Display omitted] •A new strategy for biofortification of cruciferous microgreens.•Production of caffeine-enriched cruciferous microgreens.•Membrane permeabilizers enhanced interspecific metabolite transfer.•Interspecific transfer of metabolites increased acceptor antioxidant capacity.•Inhibitory ac...

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Veröffentlicht in:Food chemistry 2023-09, Vol.420, p.136186-136186, Article 136186
Hauptverfasser: Davosir, Dino, Šola, Ivana
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Sprache:eng
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Zusammenfassung:[Display omitted] •A new strategy for biofortification of cruciferous microgreens.•Production of caffeine-enriched cruciferous microgreens.•Membrane permeabilizers enhanced interspecific metabolite transfer.•Interspecific transfer of metabolites increased acceptor antioxidant capacity.•Inhibitory activity against enzymes related to diabetes and obesity improved. Interspecific metabolite transfer (ISMT) is a novel approach for plants biofortification. In this study, the effect of tea (Camellia sinensis; Cs), with or without membrane permeabilizers EDTA and Tween, as a donor plant on broccoli, cauliflower and kale sprouts was investigated. As a result, caffeine- and catechin-enriched broccoli, cauliflower and kale microgreens were produced. Kale sprouts were most permeable for catechins from Cs, while cauliflower was most permeable for caffeine. Cs + EDTA significantly increased vitamin C in broccoli and kale. Among the tested enzymes activity, pancreatic lipase was the most affected by the treatment with broccoli and cauliflower biofortified with Cs or Cs combined with permeabilizers. Broccoli sprouts biofortified with Cs most significantly inhibited α-amylase, while those biofortified with Cs combined with permeabilizers most significantly inhibited α-glucosidase. Results point to ISMT combined with membrane permeabilizers as a promising and eco-friendly biofortification strategy to improve the biopotential of Brassica microgreens.
ISSN:0308-8146
1873-7072
DOI:10.1016/j.foodchem.2023.136186