Extracts from Chlorella vulgaris Protect Mesenchymal Stromal Cells from Oxidative Stress Induced by Hydrogen Peroxide

Microalgae as unicellular eukaryotic organisms demonstrate several advantages for biotechnological and biological applications. Natural derived microalgae products demand has increased in food, cosmetic and nutraceutical applications lately. The natural antioxidants have been used for attenuation of...

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Veröffentlicht in:Plants (Basel) 2023-01, Vol.12 (2), p.361
Hauptverfasser: Savvidou, Maria G, Georgiopoulou, Ioulia, Antoniou, Nasia, Tzima, Soultana, Kontou, Maria, Louli, Vasiliki, Fatouros, Chronis, Magoulas, Kostis, Kolisis, Fragiskos N
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Sprache:eng
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Zusammenfassung:Microalgae as unicellular eukaryotic organisms demonstrate several advantages for biotechnological and biological applications. Natural derived microalgae products demand has increased in food, cosmetic and nutraceutical applications lately. The natural antioxidants have been used for attenuation of mitochondrial cell damage caused by oxidative stress. This study evaluates the in vitro protective effect of bioactive extracts against oxidative stress in human mesenchymal stromal/stem cells (MSCs). The classical solid-liquid and the supercritical extraction, using biomass of commercially available and laboratory cultivated , are employed. Oxidative stress induced by 300 μM H O reduces cell viability of MSCs. The addition of extracts, with increased protein content compared to carbohydrates, to H O treated MSCs counteracted the oxidative stress, reducing reactive oxygen species levels without affecting MSC proliferation. The supercritical extraction was the most efficient extraction method for carotenoids resulting in enhanced antioxidant activity. Pre-treatment of MSCs with extracts mitigates the oxidative damage ensued by H O Initial proteomic analysis of secretome from licensed (TNFα-activated) MSCs treated with algal extracts reveals a signature of differentially regulated proteins that fall into clinically relevant pathways such as inflammatory signaling. The enhanced antioxidative and possibly anti-inflammatory capacity could be explored in the context of future cell therapies.
ISSN:2223-7747
2223-7747
DOI:10.3390/plants12020361