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June 3, 2026Ultrasonics Sonochemistry1 citationsOpen Access

Ultrasound-assisted deep eutectic solvent extraction of polyphenols from Cornus officinalis: Optimization, mechanisms, and bioactivity

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PCP ChenWuhan UniversityWXWenhao XiaoBeijing Institute of TechnologyRLRuixiang LiWuhan University

Key Points

  • The aim is to optimize ultrasound-assisted extraction of polyphenols from Cornus officinalis using deep eutectic solvents.
  • Utilized deep eutectic solvents (ChCl–Ace) for extraction of polyphenols from Cornus officinalis.
  • Applied ultrasound-assisted extraction (UAE) with optimal conditions of 350 W power and 24:1 mL/g liquid-to-solid ratio.
  • Analyzed phenolic compounds using high-performance liquid chromatography–mass spectrometry.
  • ChCl–Ace–UAE extract achieved 91.25% inhibition of Staphylococcus aureus, 95.48% of Escherichia coli, and 93.72% of Propionibacterium acnes at 0.5 mg/mL.
  • Molecular dynamics simulations indicated enhanced solute–solvent interactions with gallic acid and cyanidin-3-O glucoside.
  • DES–Ace exhibited superior antioxidant properties in vitro.

Abstract

This study investigated the combined use of deep eutectic solvents (DESs) and ultrasound-assisted extraction (UAE) for extracting polyphenols from Cornus officinalis (COF). The results revealed that DESs containing choline chloride–acetamide (ChCl–Ace, 1 : 2) yielded the highest extraction efficiency. Optimal extraction conditions included an ultrasonic power of 350 W, a liquid-to-solid ratio of 24 : 1 mL/g, and 45% water content. Eight phenolic compounds in the COF extract were identified using high-performance liquid chromatography–mass spectrometry. According to the SEM observations, the surface structure of the samples was modified by UAE, as indicated by an average pore size of 770 ± 14.32 nm in ChCl–Ace–UAE, which helped release phenolic compounds. Molecular dynamics simulations showed that ChCl–Ace significantly enhanced solute–solvent interactions, particularly with gallic acid and cyanidin-3-O glucoside, leading to improved extraction efficiency. In vitro chemical and cellular assays confirmed that DES–Ace displayed superior antioxidant properties. In addition, the ChCl–Ace–UAE extract (0.5 mg/mL) demonstrated 91.25 ± 0.15% Staphylococcus aureus , 95.48 ± 0.17% Escherichia coli and 93.72 ± 0.36% Propionibacterium acnes inhibition in the antibacterial assay. In summary, the combined use of UAE and DESs offers a promising and eco-friendly approach for extracting valuable compounds from botanical sources.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc530dee9eb8c0dce69c5https://doi.org/10.1016/j.ultsonch.2026.107909
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