Czech J. Food Sci., X:X | DOI: 10.17221/33/2026-CJFS
Antioxidant potential and antimicrobial activity of coloured onion peels extracted using ultrasound-assisted deep eutectic solventsOriginal Paper
- 1 Department of Chemical Engineering, Faculty of Engineering, Istanbul University-Cerrahpasa, Istanbul, Türkiye
- 2 Department of Biology, Faculty of Science, Istanbul University, Istanbul, Türkiye
- 3 Department of Pharmaceutical Microbiology, Faculty of Pharmacy, Istanbul University, Istanbul, Türkiye
In this study, the most effective deep eutectic solvent (DES) for extracting antioxidants from purple onion peel was identified using total antioxidant capacity (TAC) values obtained by the CUPRAC assay. The DES systems used in this study consisted of choline chloride (ChCl) combined with ethylene glycol (EG), diethylene glycol (DiEG), triethylene glycol (TriEG), tetraethylene glycol (TetEG), 1,4-butanediol (1,4-but), and 1,2-propanediol (1,2-pro) at a molar ratio of 1 : 2 with 30% water content. All DESs were characterised in terms of Fourier transform infrared (FTIR) spectra, viscosity, density, and pH. Ultrasound-assisted extraction was optimised using response surface methodology, resulting in a maximum TAC of 582.96 mg Trolox equivalent (TE)·g–1 dry sample (DS) for ChCl : 1,4-but : H2O, which was almost twice the amount achieved with 70% ethanol. Antioxidant parameters, including TAC, total phenolic content, total flavonoid content, and radical scavenging activities [2,2-diphenyl-1-picrylhydrazyl (DPPH) and 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS)], were evaluated for purple, red, brown, and white onion peels. Antimicrobial activity was assessed using the broth microdilution method. HPLC analysis was employed to quantify phenolic and flavonoid compounds, revealing significant compositional differences among the onion peels. Overall, the results demonstrate that purple and red onion peels exhibit superior antioxidant and antimicrobial properties, supporting their potential as sustainable sources of natural antioxidants.
Keywords: ultrasound-assisted extraction; CUPRAC assay; phenolic compounds; flavonoids; HPLC analysis; Allium cepa
Received: March 3, 2026; Revised: July 4, 2026; Accepted: July 8, 2026; Prepublished online: August 12, 2026
References
- Alsaud N., Shahbaz K., Farid M. (2021): Application of deep eutectic solvents in the extraction of polyphenolic antioxidants from New Zealand Manuka leaves (Leptospermum scoparium): Optimization and antioxidant activity. Journal of Molecular Liquids, 337: 116385.
Go to original source... - Altun M., Çelik S.E., Güçlü K., Özyürek M., Erçağ E., Apak R. (2011): Total antioxidant capacity and phenolic contents of Turkish hazelnut (Corylus avellana L.) kernels and oils. Journal of Food Biochemistry, 37: 55-64.
Go to original source... - Bener M. (2019): Modeling and optimising microwave-assisted extraction of antioxidants from Thymbra spicata L. and characterization of their phenolic constituents. Food Science and Biotechnology, 28: 1733-1745.
Go to original source...
Go to PubMed... - Doldolova K., Bener M., Lalikoğlu M., Aºçi Y.S., Arat R., Apak R. (2021): Optimization and modeling of microwave-assisted extraction of curcumin and antioxidant compounds from turmeric by using natural deep eutectic solvents. Food Chemistry, 353: 129337.
Go to original source...
Go to PubMed... - Bayram N.E., Gerçek Y.C., Bayram S., Toğar B. (2020): Effects of processing methods and extraction solvents on the chemical content and bioactive properties of propolis. Journal of Food Measurement and Characterization, 14: 905-916.
Go to original source... - Fu X., Wang D., Belwal T., Xu Y., Li L., Luo Z. (2021): Sonication-synergistic natural deep eutectic solvent as a green and efficient approach for extraction of phenolic compounds from peels of Carya cathayensis Sarg. Food Chemistry, 355: 129577.
Go to original source...
Go to PubMed... - Ibrahim R.K., Hayyan M., AlSaadi M.A., Ibrahim S., Hayyan A., Hashim M.A. (2019): Physical properties of ethylene glycol-based deep eutectic solvents. Journal of Molecular Liquids, 276: 794-800.
Go to original source... - Jafari K., Hossein Fatemi M., Lugo L. (2022): An experimental study of novel nanofluids based on deep eutectic solvents (DESs) by choline chloride and ethylene glycol. Journal of Molecular Liquids, 360: 119521.
Go to original source... - Juriæ T., Uka D., Holló B.B., Joviæ B., Kordiæ B., Popoviæ B.M. (2021): Comprehensive physicochemical evaluation of choline chloride-based natural deep eutectic solvents. Journal of Molecular Liquids, 343: 116968.
Go to original source... - Kumar M., Barbhai M.D., Hasan M., Dhumal S., Singh S., Pandiselvam R., Rais N., Natta S., Senapathy M., Sinha N., Amarowicz R. (2022a): Onion (Allium cepa L.) peel: A review on the extraction of bioactive compounds, its antioxidant potential, and its application as a functional food ingredient. Journal of Food Science, 87: 4289-4311.
Go to original source... - Kumar M., Barbhai M.D., Hasan M., Punia S., Dhumal S., Radha, Rais N., Chandran D., Pandiselvam R., Kothakota A., Tomar M., Satankar V., Senapathy M., Anitha T., Dey A., Sayed A.A.S., Gadallah F.M., Amarowicz R., Mekhemar M. (2022b): Onion (Allium cepa L.) peels: A review on bioactive compounds and biomedical activities. Biomedicine & Pharmacotherapy, 146: 112498.
Go to original source... - Lachman J., Pronìk D., Hejtmánková A., Dudjak J., Pivec V., Faitová K. (2003): Total polyphenol and main flavonoid antioxidants in different onion (Allium cepa L.) varieties. Horticultural Science, 30: 142-147.
Go to original source... - Magalhães L.M., Santos F., Segundo M.A., Reis S., Lima J.L.F.C. (2010): Rapid microplate high-throughput methodology for assessment of Folin-Ciocalteu reducing capacity. Talanta, 83: 441-447.
Go to original source...
Go to PubMed... - Majid M.F., Mohd Zaid H.F., Kait C.F., Ghani N.A., Jumbri K. (2019): Mixtures of tetrabutylammonium chloride salt with different glycol structures: Thermal stability and functional groups characterizations. Journal of Molecular Liquids, 294: 111588.
Go to original source... - Mayda N., Özkök A., Bayram N.E., Gerçek Y.C., Sorkun K. (2020): Bee bread and bee pollen of different plant sources: Determination of phenolic content, antioxidant activity, fatty acid and element profiles. Journal of Food Measurement and Characterization, 14: 1795-1809.
Go to original source... - Ozturk B., Parkinson C., Gonzalez-Miquel M. (2018): Extraction of polyphenolic antioxidants from orange peel waste using deep eutectic solvents. Separation and Purification Technology, 206: 1-13.
Go to original source... - Pal C.B.T., Jadeja G.C. (2019): Deep eutectic solvent-based extraction of polyphenolic antioxidants from onion (Allium cepa L.) peel. Journal of the Science of Food and Agriculture, 99: 1969-1979.
Go to original source...
Go to PubMed... - Pfaller M.A., Messer S.A., Boyken L., Huynh H., Hollis R.J., Diekema D.J. (2002): In vitro activities of 5-fluorocytosine against 8,803 clinical isolates of Candida spp.: Global assessment of primary resistance using National Committee for Clinical Laboratory Standards susceptibility testing methods. Antimicrobial Agents and Chemotherapy, 46: 3518-3521.
Go to original source...
Go to PubMed... - Rashid R., Wani S.M., Manzoor S., Masoodi F.A., Dar M.M. (2022): Green extraction of bioactive compounds from apple pomace by ultrasound assisted natural deep eutectic solvent extraction: Optimisation, comparison and bioactivity. Food Chemistry, 398: 133871.
Go to original source... - Sagar N.A., Pareek S., Benkeblia N., Xiao J. (2022): Onion (Allium cepa L.) bioactives: Chemistry, pharmacotherapeutic functions, and industrial applications. Food Frontiers, 3: 380-412.
Go to original source... - Shiponi S., Bernstein N. (2021): The highs and lows of P supply in medical cannabis: Effects on cannabinoids, the ionome, and morpho-physiology. Frontiers in Plant Science, 12: 657323.
Go to original source...
Go to PubMed... - Song C., Saloner A., Fait A., Bernstein N. (2023): Nitrogen deficiency stimulates cannabinoid biosynthesis in medical cannabis plants by inducing a metabolic shift towards production of low-N metabolites. Industrial Crops & Products, 202: 116969.
Go to original source... - Stefou I., Grigorakis S., Loupassaki S., Makris D.P. (2019): Development of sodium propionate-based deep eutectic solvents for polyphenol extraction from onion solid wastes. Clean Technologies and Environmental Policy, 21: 1563-1574.
Go to original source... - Stoica F., Rațu R.N., Veleșcu I.D., Stãnciuc N., Râpeanu G. (2023): A comprehensive review on bioactive compounds, health benefits, and potential food applications of onion (Allium cepa L.) skin waste. Trends in Food Science & Technology, 141: 104173.
Go to original source... - Subramaniam P., Nandan N. (2011): Effect of xylitol, sodium fluoride and triclosan containing mouth rinse on Streptococcus mutans. Contemporary Clinical Dentistry, 2: 287-290.
Go to original source...
Go to PubMed... - Vorobyova V., Skiba M., Vasyliev G. (2022): Extraction of phenolic compounds from tomato pomace using choline chloride-based deep eutectic solvents. Journal of Food Measurement and Characterization, 16: 1087-1104.
Go to original source... - Wan Mahmood W.M.A., Lorwirachsutee A., Theodoropoulos C., Gonzalez-Miquel M. (2019): Polyol-based deep eutectic solvents for extraction of natural polyphenolic antioxidants from Chlorella vulgaris. ACS Sustainable Chemistry & Engineering, 7: 5018-5026.
Go to original source... - Wang H., Liu S., Zhao Y., Wang J., Yu Z. (2019): Insights into the hydrogen bond interactions in deep eutectic solvents composed of choline chloride and polyols. ACS Sustainable Chemistry & Engineering, 7: 7760-7767.
Go to original source... - Warraich U.-E.-A., Hussain F., Kayani H.U.R. (2020): Aging - Oxidative stress, antioxidants and computational modeling. Heliyon, 6: e04107.
Go to original source...
Go to PubMed... - Xu M., Ran L., Chen N., Fan X., Ren D., Yi L. (2019): Polarity-dependent extraction of flavonoids from citrus peel waste using a tailor-made deep eutectic solvent. Food Chemistry, 297: 124970.
Go to original source...
Go to PubMed... - Zannou O., Koca I. (2022): Greener extraction of anthocyanins and antioxidant activity from blackberry (Rubus spp.) using natural deep eutectic solvents. LWT - Food Science and Technology, 158: 113184.
Go to original source... - Zhishen J., Mengcheng T., Jianming W. (1999): The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chemistry, 64: 555-559.
Go to original source...
This is an open access article distributed under the terms of the Attribution 4.0 International (CC BY 4.0.), which permits use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.

ORCID...