Phytochemical profiling and bioactivity assessment of underutilized Symphytum species in comparison with Symphytum officinale. 2024

Simon Vlad Luca, and Gokhan Zengin, and Łukasz Kulinowski, and Kouadio Ibrahime Sinan, and Krystyna Skalicka-Woźniak, and Adriana Trifan
Biothermodynamics, TUM School of Life Sciences, Technical University of Munich, Freising, Germany.

BACKGROUND Symphytum (comfrey) genus, particularly Symphytum officinale, has been empirically used in folk medicine mainly for its potent anti-inflammatory properties. In an attempt to shed light on the valorization of less known taxa, the current study evaluated the metabolite profile and antioxidant and enzyme inhibitory effects of nine Symphytum species. RESULTS Phenolic acids, flavonoids and pyrrolizidine alkaloids were the most representative compounds in all comfrey samples. Hierarchical cluster analysis revealed that, within the roots, S. grandiflorum was slightly different from S. ibericum, S. caucasicum and the remaining species. Within the aerial parts, S. caucasicum and S. asperum differed from the other samples. All Symphytum species showed good antioxidant and enzyme inhibitory activities, as evaluated in DPPH (up to 50.17 mg Trolox equivalents (TE) g-1 ), ABTS (up to 49.92 mg TE g-1 ), cupric reducing antioxidant capacity (CUPRAC, up to 92.93 mg TE g-1 ), ferric reducing antioxidant power (FRAP, up to 53.63 mg TE g-1 ), acetylcholinesterase (AChE, up to 0.52 mg galanthamine equivalents (GALAE) g-1 ), butyrylcholinesterase (BChE, up to 0.96 mg GALAE g-1 ), tyrosinase (up to 13.58 mg kojic acid equivalents g-1 ) and glucosidase (up to 0.28 mmol acarbose equivalents g-1 ) tests. Pearson correlation analysis revealed potential links between danshensu and ABTS/FRAP/CUPRAC, quercetin-O-hexoside and DPPH/CUPRAC, or rabdosiin and anti-BChE activity. CONCLUSIONS By assessing for the first time in a comparative manner the phytochemical-biological profile of a considerably high number of Symphytum samples, this study unveils the potential use of less common comfrey species as novel phytopharmaceutical or agricultural raw materials. © 2024 The Authors. Journal of The Science of Food and Agriculture published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

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