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Extraction of Antioxidant Compounds from Onion Bulb ( L.) Using Individual and Simultaneous Microwave-Assisted Extraction Methods

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Date 2022 May 28
PMID 35624711
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Abstract

Despite the excellent beneficial properties that anthocyanins and total phenolic compounds give to the red onion bulbs, few articles have investigated modern extraction techniques or experimental designs in this field. For this reason, the present study proposes the development and optimization of alternative methods for the extraction of these compounds based on microwave-assisted extraction and the Box-Behnken experiment design. The optimal values for the extraction of total anthocyanins have been established at 62% methanol composition as a solvent, pH 2, 56 °C temperature, and 0.2:13 g:mL sample-solvent ratio. Regarding the extraction of total phenolic compounds, the optimal conditions have been established at 100% pure methanol as a solvent with pH 2, 57 °C temperature, and 0.2:8.8 g:mL sample-solvent ratio. Short extraction times (min), good recoveries (mg of bioactive compound g of dry onion), and high repeatability and intermediate precision (coefficient of variation (%)) have been confirmed for both methods. Regarding total anthocyanins, the following results have been obtained: 2 min, 2.64 ± 0.093 mg of total anthocyanins g of dry onion, and 2.51% and 3.12% for precision. Regarding phenolic compounds, the following results have been obtained: 15 min, 7.95 ± 0.084 mg of total phenolic compound g of dry onion, and 3.62% and 4.56% for precision. Comparing these results with those of other authors and with those obtained in a previous study of ultrasound-assisted extraction, it can be confirmed that microwave-assisted extraction is a quantitative, repeatable, and very promising method for the extraction of phenolic compounds and anthocyanins, which offers similar and even superior results with little solvent expense, time, and costs.

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References
1.
Mustafa A, Turner C . Pressurized liquid extraction as a green approach in food and herbal plants extraction: A review. Anal Chim Acta. 2011; 703(1):8-18. DOI: 10.1016/j.aca.2011.07.018. View

2.
Setford P, Jeffery D, Grbin P, Muhlack R . Mass Transfer of Anthocyanins during Extraction from Pre-Fermentative Grape Solids under Simulated Fermentation Conditions: Effect of Convective Conditions. Molecules. 2018; 24(1). PMC: 6337465. DOI: 10.3390/molecules24010073. View

3.
V Gonzalez-de-Peredo A, Vazquez-Espinosa M, Espada-Bellido E, Ferreiro-Gonzalez M, Carrera C, Barbero G . Development of Optimized Ultrasound-Assisted Extraction Methods for the Recovery of Total Phenolic Compounds and Anthocyanins from Onion Bulbs. Antioxidants (Basel). 2021; 10(11). PMC: 8614850. DOI: 10.3390/antiox10111755. View

4.
Ko E, Nile S, Jung Y, Keum Y . Antioxidant and antiplatelet potential of different methanol fractions and flavonols extracted from onion ( L.). 3 Biotech. 2018; 8(3):155. PMC: 5832655. DOI: 10.1007/s13205-018-1184-4. View

5.
Ju Z, Howard L . Effects of solvent and temperature on pressurized liquid extraction of anthocyanins and total phenolics from dried red grape skin. J Agric Food Chem. 2003; 51(18):5207-13. DOI: 10.1021/jf0302106. View