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Sorbus domestica Leaf Extracts and Their Activity Markers: Antioxidant Potential and Synergy Effects in Scavenging Assays of Multiple Oxidants.

Authors :
Rutkowska, Magdalena
Olszewska, Monika Anna
Kolodziejczyk-Czepas, Joanna
Nowak, Pawel
Owczarek, Aleksandra
Cardoso, Susana M.
Fazio, Alessia
Source :
Molecules. Jun2019, Vol. 24 Issue 12, p2289-2289. 1p.
Publication Year :
2019

Abstract

Sorbus domestica leaves are a traditionally used herbal medicine recommended for the treatment of oxidative stress-related diseases. Dry leaf extracts (standardized by LC-MS/MS and LC-PDA) and nine model activity markers (polyphenols), were tested in scavenging assays towards six in vivo-relevant oxidants (O2•−, OH•, NO•, H2O2, ONOO−, HClO). Ascorbic acid (AA) and Trolox (TX) were used as positive standards. The most active extracts were the diethyl ether and ethyl acetate fractions with activities in the range of 3.61–20.03 µmol AA equivalents/mg, depending on the assay. Among the model compounds, flavonoids were especially effective in OH• scavenging, while flavan-3-ols were superior in O2•− quenching. The most active constituents were quercetin, (−)-epicatechin, procyanidins B2 and C1 (3.94–24.16 µmol AA/mg), but considering their content in the extracts, isoquercitrin, (−)-epicatechin and chlorogenic acid were indicated as having the greatest influence on extract activity. The analysis of the synergistic effects between those three compounds in an O2•− scavenging assay demonstrated that the combination of chlorogenic acid and isoquercitrin exerts the greatest influence. The results indicate that the extracts possess a strong and broad spectrum of antioxidant capacity and that their complex composition plays a key role, with various constituents acting complementarily and synergistically. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
24
Issue :
12
Database :
Academic Search Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
137235407
Full Text :
https://doi.org/10.3390/molecules24122289