npj Science of Food· 2026Q1
Selective recovery of Ginkgo biloba flavonoids and simultaneous removal of ginkgolic acids via deep eutectic solvent‑based liquid‑liquid extraction
- 0citations
- Q1SCImago
- 2026year
Short summary
A new two-phase deep eutectic solvent (DES) liquid-liquid extraction method selectively recovers Ginkgo biloba flavonoids (GBFs) with a yield of 10.06 mg/g and removes 86.28% of ginkgolic acids (GAs) with only 6.46% GBF loss.
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Key points
- A novel two-phase deep eutectic solvent (DES) liquid-liquid extraction method was developed for Ginkgo leaf processing.
- A hydrophilic DES (M-β-CD/BDO) achieved a maximum GBF extraction yield of 10.06 ± 0.14 mg/g.
- A hydrophobic DES (oleic acid/lauryl alcohol) removed 86.28 ± 1.21% of ginkgolic acids with only 6.46 ± 0.23% GBF loss.
- Computational methods (COSMOtherm, DFT, molecular dynamics) were used to screen DESs and elucidate extraction mechanisms.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract This study develops a green and efficient two-phase deep eutectic solvents (DESs) liquid–liquid extraction (LLE) method, utilizing hydrophilic DESs for Ginkgo biloba flavonoids (GBFs) extraction and hydrophobic DESs for G. biloba acid (GAs) removal from Ginkgo leaf. Initially, COSMOtherm software was employed to screen 80 DESs through activity coefficient calculations, identifying suitable hydrophilic and hydrophobic DESs. Among the COSMOtherm-screened and experimentally validated DESs, the hydrophilic DESs composed of Methyl- β -cyclodextrin and 1,4-butylene Glycol (M- β -CD/BDO) with a mass ratio of 1:5 was selected, demonstrated higher extraction efficiency for GBF. Under the optimal conditions, the maximum extraction yield of GBFs reached 10.06 ± 0.14 mg/g. Subsequently, oleic acid/lauryl alcohol (5:1) was applied to remove five types of GAs from the M‑ β ‑CD/BDO extract using LLE. Through the optimization of LLE conditions, the removal rate of GAs reached 86.28 ± 1.21%, while the loss rate of GBFs was only 6.46 ± 0.23%. Finally, hybrid density functional theory (DFT) calculations, including the measurement of the binding energy (E int ), and scanning electron microscopy (SEM) were employed to elucidate the mechanism by which M‑ β ‑CD/BDO enhances the extraction efficiency of GBFs. Additionally, molecular dynamics simulations were conducted to quantitatively analyze the diffusion coefficients of 13 Ginkgo compounds in M‑ β ‑CD/BDO and OleA/Lau systems.
The authors' abstract, as published at the source. npj Science of Food, 2026 · DOI ↗
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Field: Complementary and alternative medicine
Complementary and alternative medicineMedicine