Junhe Wang1,
Yuanyuan You1,
Rongjun Xu1,
Lanying Li1,
Xian Li1,
Jiao Jiang1, 2,
Yi Qin1, 2,
Yanlin Liu1, 2,
Yuyang Song1, 2,
1College of Enology, Northwest A&F University, 22 Xinong Road, Yangling, Shaanxi Province 712100, China
2Ningxia Research Institute NWAFU, Intersection of Ning'an West Lane and Fu'an Lane, Jinfeng District, Yinchuan, Ningxia 750002, China
Journal of Food and Nutrition Research.
2026,
Vol. 14 No. 7, 162-177
DOI: 10.12691/jfnr-14-7-2
Copyright © 2026 Science and Education PublishingCite this paper: Junhe Wang, Yuanyuan You, Rongjun Xu, Lanying Li, Xian Li, Jiao Jiang, Yi Qin, Yanlin Liu, Yuyang Song. Differential Effects of Cornus officinalis-Derived Polysaccharides and Ursolic Acid on the Chemical Composition, Aroma Profile, and Bioactivity of Functional Fruit Wines.
Journal of Food and Nutrition Research. 2026; 14(7):162-177. doi: 10.12691/jfnr-14-7-2.
Correspondence to: Yuyang Song, College of Enology, Northwest A&F University, 22 Xinong Road, Yangling, Shaanxi Province 712100, China. Email:
yuyangsong@nwsuaf.edu.cnAbstract
Cornus fruit (Cornus officinalis) is a medicinal and edible fruit rich in bioactive compounds, including polysaccharides (PS) and ursolic acid (UA). However, the effects of these individual functional components on the quality and bioactivity of fruit wines remain poorly understood. This study aimed to investigate the distinct and matrix-dependent effects of C. officinalis-derived PS and UA on the physicochemical properties, chemical composition, aroma characteristics, and biological activities of grape wine and C. officinalis fermented wine. PS and UA were extracted from dried C. officinalis fruits and quantified using UV–Vis spectrophotometry. Their antioxidant and α-glucosidase inhibitory activities were evaluated in vitro. Subsequently, PS- and UA-fortified wines were prepared, and their physicochemical properties, phenolic profiles, volatile compounds, and bioactivities were analyzed using chemical assays, HPLC, GC–MS, and statistical analysis. The extraction yields of UA and PS were 4.17% and 2.88%, respectively. UA exhibited stronger bioactivity at low concentrations, whereas PS showed concentration-dependent antioxidant effects, particularly for hydroxyl radical scavenging. In wine matrices, UA promoted the retention of floral aroma compounds, increasing linalool and geraniol contents by 18.7% and 15.2%, respectively. PS markedly altered volatile profiles by enhancing higher alcohols and acetate esters. Moreover, PS increased ABTS scavenging activity, hydroxyl radical scavenging activity, and α-glucosidase inhibition by 16.4%, 19.1%, and 14.7%, respectively. UA and PS regulate fruit wine quality through different pathways. UA is more suitable for low-dose functional enhancement while preserving aroma characteristics, whereas PS contributes to bioactivity improvement and aroma modification. These findings provide a basis for the targeted application of C. officinalis functional components in fruit wine development.
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