Induction of antioxidant activities of Arthrospira platensis and Chlorella vulgaris by modified culture conditions
Microalgae are considered a promising source for obtaining natural compounds with strong antioxidant activity. Despite the great progress made in this field, there is still need for further studies applying simple and cost-effective modifications to reveal their full potential and enhance antioxidan...
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Veröffentlicht in: | Bioprocess and biosystems engineering 2024-02, Vol.47 (2), p.275-287 |
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Sprache: | eng |
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Zusammenfassung: | Microalgae are considered a promising source for obtaining natural compounds with strong antioxidant activity. Despite the great progress made in this field, there is still need for further studies applying simple and cost-effective modifications to reveal their full potential and enhance antioxidant properties.
Arthrospira platensis
and
Chlorella vulgaris
are some of the most common cells studied for this purpose. In this study, it was aimed to develop a bioprocess for the enhancement of antioxidant properties of these two microalgae by evaluating the effect of different culture conditions. With this aim, the impacts of light intensity/reactive oxygen species and nitrogen sources/reactive oxygen species were evaluated for the
A. platensis
and
C. vulgaris
cells, respectively. Results showed that the antioxidant potential of
A. platensis
was found to be correlated with the phycocyanin and total phenolic content of cells, and 80 µmol photons m
−2
s
−1
light intensity induced antioxidant activity in a two-step cultivation mode. For
C. vulgaris
cells, maximum antioxidant activities of 68.10 ± 1.51% and 75.68 ± 0.66% were obtained in cultures with NH
4
Cl (0.016% (w/v)) for DPPH and ABTS assays, respectively. The applied oxidative stress factors exhibited different effects on the antioxidant activities of the cells because of their cellular morphologies and changing mechanisms of reactive oxygen species. These outcomes show the potential of applied modifications on cells and suggest a promising route to enhance antioxidant activities of microalgae for further research. |
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ISSN: | 1615-7591 1615-7605 1615-7605 |
DOI: | 10.1007/s00449-023-02963-5 |