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February 21, 2026LWT2 citationsOpen Access

Development of Levulinic Acid/L-Proline DES-Functionalized Fe3O4 Nanoparticles for High-Performance Extraction of Flavonoids from Scutellaria Radix

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GTGuohua TengMZMin ZhouIAInitizar Anwar

Key Points

  • To develop a green and effective method for selective extraction of flavonoids from Scutellaria Radix using DES-functionalized magnetic nanoparticles.
  • Screened 48 deep eutectic solvents (DESs) to identify the optimal system
  • Synthesized Fe3O4@SiO2@DES for magnetic solid-phase extraction
  • Optimized conditions for flavonoid adsorption and desorption
  • Achieved adsorption efficiencies for flavonoids ranging from 0.770 to 0.983
  • Demonstrated desorption recoveries between 0.551 to 0.919
  • Exhibited excellent linearity with R2 ≥ 0.9998
  • Maintained high adsorption efficiency (>90%) after six reuse cycles

Abstract

Flavonoids in Scutellaria Radix ( SR ) exhibit significant pharmacological activities, yet conventional extraction methods often suffer from low efficiency and poor selectivity. Here, a green and effective strategy was developed using deep eutectic solvent (DES)-functionalized magnetic nanoparticles for selective flavonoid enrichment. Forty-eight DESs were screened, and levulinic acid/L-proline (2:1) was identified as the optimal system. The selected DES was employed to synthesize Fe 3 O 4 @SiO 2 @DES, which demonstrated high specificity and adsorption performance in magnetic solid-phase extraction. Under optimized conditions, adsorption efficiencies for four representative flavonoids ranged from 0.770 ± 0.01 to 0.983± 0.002, with desorption recoveries of 0.551 ± 0.003 to 0.919 ± 0.019. The method showed excellent linearity (R 2 ≥ 0.9998) and low limits of detection and quantification (0.01-0.35 μg·mL -1 and 0.03-0.98 μg·mL -1 , respectively). Moreover, the adsorbent retained high adsorption efficiency after six reuse cycles, demonstrating stability and reusability. This work provides a sustainable and selective approach for flavonoid enrichment from SR and highlights the potential of DES-functionalized magnetic nanomaterials as an eco-friendly alternative to conventional organic solvent-based extraction. • A DES-functionalized magnetic adsorbent was developed for flavonoid MSPE. • Flavonoids from Scutellaria Radix were selectively enriched with high recoveries. • Low LODs (0.02-0.12 μg·mL -1 ) enabled sensitive flavonoid determination. • The adsorbent retained >90% adsorption efficiency after five reuse cycles.

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Cite This Study

Teng et al. (2026) studied this question.

synapsesocial.com/papers/69994b64873532290d01f85fhttps://doi.org/10.1016/j.lwt.2026.119176
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