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March 5, 2026Ultrasonics Sonochemistry0 citationsOpen Access

Docynia delavayi (Franch.) Schneid polyphenols: Optimization of ultrasound-assisted extraction and bioactivity study

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TZTingting ZhangUniversity of Shanghai for Science and TechnologyLYLiguo YangFXFan XieUniversity of Shanghai for Science and Technology

Key Points

  • The research aims to optimize the extraction process for polyphenols from Docynia delavayi and explore their biological activities.
  • Utilized ultrasound-assisted extraction (UAE) for polyphenol isolation.
  • Employed single-factor assays and response surface methodology to optimize extraction conditions.
  • Conducted in vitro evaluations of antioxidant and enzyme inhibitory activities.
  • Performed metagenomic and untargeted metabolomics analyses on effects of DDP.
  • Optimal extraction conditions were identified: 43% ethanol, 460 W ultrasonic power, 21 mL/g liquid-to-solid ratio, and 41 min duration.
  • DDP demonstrated high antioxidant activity with an IC50 of 3.75 μg/mL.
  • Inhibition of carbohydrate-digesting enzymes was observed.
  • DDP reduced pathogenic bacteria and promoted beneficial microbiota.
  • Modulated pathways related to fatty acid biosynthesis and metabolism.

Abstract

Docynia delavayi is a polyphenol-rich indigenous plant from China, known for its medicinal and edible properties. However, its bioactivities have been scarcely studied. This study aimed to establish an efficient ultrasound-assisted extraction (UAE) process for isolating D. delavayi polyphenols (DDP) and to systematically assess their bioactivities. Single-factor assays combined with response surface methodology were employed to determine optimal UAE conditions for DDP: 43% ethanol, 460 W ultrasonic power, 21 mL/g liquid-to-solid ratio, and 41 min extraction. In vitro evaluation showed that DDP exhibited excellent antioxidant (DPPH radical scavenging IC50 = 3.75 μg/mL) and carbohydrate digestion enzyme (α-Glucosidase and α-Amylase) inhibitory activity. Moreover, DDP also exhibited inhibitory effects on Escherichia coli , Bacillus subtilis , Staphylococcus aureus , and Salmonella . Metagenomic analysis revealed that DDP promoted species associated with short-chain fatty acid synthesis, such as Flavonifractor plautii and Eubacterium sp., while reducing pathogenic bacteria, including Shigella sonnei and Klebsiella pneumoniae . Untargeted metabolomics analysis showed that DDP modulated the intestinal metabolic profile and enriched pathways involved in Fatty acid biosynthesis, Fatty acid metabolism, and Fatty acid elongation in mitochondria. We believe that DDP, owing to its remarkable biological activity, may exhibit significant prebiotic effects, thereby modulating the gut microbiota and metabolic network, ultimately improving host health. This study elucidated an efficient UAE process and the diverse biological activities of DDP, providing an experimental foundation for its development as a natural functional ingredient and supporting high-value utilization of medicinal and edible plant resources.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a91e1fd6127c7a504c1ce5https://doi.org/10.1016/j.ultsonch.2026.107804
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