Flavoglycans: Evidence for Covalent Proanthocyanidin–Polysaccharide Linkages in Western Redcedar Bark

Abstract We investigated covalent linkages between proanthocyanidins (PAs) and cell wall polysaccharides in western redcedar bark (Thuja plicata Donn), a tannin-rich forestry co-product that has potential as a functional food ingredient. An alcohol-insoluble residue (AIR; 1.0% w/w relative to oven-dried bark) recovered from aqueous extracts contained both PAs (≥1.46% w/w of AIR) and polysaccharides (∼30% w/w of AIR) and resisted fractionation by inert solvents, consistent with recalcitrant PA–carbohydrate association. Acidic butanol hydrolysis coupled with LC–MS revealed diagnostic C-glycosylated anthocyanidins, including 6-C-pentosylcyanidin, 8-C-(deoxyhexosyl)cyanidin, and X-C-(deoxyhexosyl)-Y-C-pentosyldelphinidin. NMR analysis supported the presence of PA–polysaccharide conjugates, implicating hemicelluloses and pectins as the carbohydrate partners. These “flavoglycans” provide a chemical basis for incomplete tannin extractability from bark matrices and suggest that carbohydrate conjugation can modulate PA accessibility and interfacial interactions in aqueous systems relevant to bioactive recovery from bark matrices. Overall, this research provides converging lines of experimental evidence suggestive of C-glycosyl crosslinking between proanthocyanidins and carbohydrates in bark.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-09-11
DOI
https://doi.org/10.1021/acs.jafc.6c03146
Primary Topic
Lignin and Wood Chemistry
Type
article
Field-Weighted Citation Impact
0.00

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article

Flavoglycans: Evidence for Covalent Proanthocyanidin–Polysaccharide Linkages in Western Redcedar Bark

Thomas Rosenau, Antje Potthast, Oliver Musl, Markus Bacher et al.
Journal of Agricultural and Food Chemistry
Lignin and Wood Chemistry
article

Flavoglycans: Evidence for Covalent Proanthocyanidin–Polysaccharide Linkages in Western Redcedar Bark

Thomas Rosenau, Antje Potthast, Oliver Musl, Markus Bacher, Orlando J. Rojas, Gio Ferson M. Bautista, Julia L. Azzi, Zhicheng Xia
article en

Abstract

Abstract We investigated covalent linkages between proanthocyanidins (PAs) and cell wall polysaccharides in western redcedar bark (Thuja plicata Donn), a tannin-rich forestry co-product that has potential as a functional food ingredient. An alcohol-insoluble residue (AIR; 1.0% w/w relative to oven-dried bark) recovered from aqueous extracts contained both PAs (≥1.46% w/w of AIR) and polysaccharides (∼30% w/w of AIR) and resisted fractionation by inert solvents, consistent with recalcitrant PA–carbohydrate association. Acidic butanol hydrolysis coupled with LC–MS revealed diagnostic C-glycosylated anthocyanidins, including 6-C-pentosylcyanidin, 8-C-(deoxyhexosyl)cyanidin, and X-C-(deoxyhexosyl)-Y-C-pentosyldelphinidin. NMR analysis supported the presence of PA–polysaccharide conjugates, implicating hemicelluloses and pectins as the carbohydrate partners. These “flavoglycans” provide a chemical basis for incomplete tannin extractability from bark matrices and suggest that carbohydrate conjugation can modulate PA accessibility and interfacial interactions in aqueous systems relevant to bioactive recovery from bark matrices. Overall, this research provides converging lines of experimental evidence suggestive of C-glycosyl crosslinking between proanthocyanidins and carbohydrates in bark.

Journal of Agricultural and Food Chemistry
University of British Columbia (CA), Konrad Lorenz Institute for Evolution and Cognition Research (AT)
Canada Foundation for Innovation, Canada Excellence Research Chairs, Government of Canada
Openalex Percentile: Top 21%
Lignin and Wood Chemistry
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