Phytochemical Profiling, Antioxidant Activity, and Protective Effect against H[sub.2]O[sub.2]-Induced Oxidative Stress of ICarlina vulgaris/I Extract

Carlina vulgaris is a little-understood plant with unexplored biological potential, and the papers regarding its chemical composition are scarce. In our study, for the first time, the phytochemical profile of the plant, focusing on polar metabolites, was established using modern chromatographic tech...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2023-07, Vol.28 (14)
Hauptverfasser: Sowa, Ireneusz, Mołdoch, Jarosław, Dresler, Sławomir, Kubrak, Tomasz, Soluch, Agata, Szczepanek, Dariusz, Strzemski, Maciej, Paduch, Roman, Wójciak, Magdalena
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Sprache:eng
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Zusammenfassung:Carlina vulgaris is a little-understood plant with unexplored biological potential, and the papers regarding its chemical composition are scarce. In our study, for the first time, the phytochemical profile of the plant, focusing on polar metabolites, was established using modern chromatographic techniques including LC-HRMS-QTOF-CAD, UHPLC-PDA-MS. Phytochemical analysis revealed that the species is a rich source of polyphenolic components, with the most abundant being chlorogenic acid and C-glycosides of luteolin, including carlinoside, orientin, isoorientin, and C-glycosides of apigenin, schaftoside, isoschaftoside, and vitexin. Furthermore, we assessed the impact of the polyphenolic-rich fraction of C. vulgaris extracts on human skin fibroblasts using the MTT and NR assays. It was found that the extract was non-toxic and exhibited potent antioxidant activity in the cells subjected to induced oxidative stress. Additionally, it effectively protected the cells against H[sub.2]O[sub.2]-induced cytotoxicity. Our study contributes to the general trend of searching for new phytotherapeutics with potential applications in pharmacy and medicine. The results indicate that further exploration of C. vulgaris species is worthwhile, as they can serve as valuable plant material for cosmetic use.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules28145422