Acta Scientiarum Polonorum Technologia Alimentaria

ISSN:1644-0730, e-ISSN:1898-9594

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original articleIssue 20 (1) 2021 pp. 17-23

Clara Raquel Espinoza1, Carlos Alexander Jaime Ruiz2, Omar Pablo Flores Ramos3, Miguel Angel Quispe Solano4, Greta Hinostroza Quiñonez2, Nancy Elisa Saavedra Mallma2

1Centro de Investigación de Productos Naturales y Aplicaciones de la Universidad Nacional del Centro del Perú, Distrito de San Jerónimo de Tunán – Huancayo – Junín, Peru
2
Facultad de Ingeniería en Industrias Alimentarias de la Universidad Nacional del Centro del Perú, Peru
3
Facultad de Ingenieria Mecánica de la Universidad Nacional del Centro del Perú, Peru
4
Estación Experimetal El Mantaro, Centro de Investigación de productos naturales de la Universidad Nacional del Centro del Perú, Jauja – Junin, Peru

Optimization of the ultrasoud-assisted extraction of saponins from quinoa (Chenopodium quinoa Wild) using response surface methodology

Abstract

Background. Quinoa grain has a bitter tasting layer in the pericarp called saponin, a triterpenoid glycoside with industrial potential. Traditionally, quinoa saponins are extracted with a large amount of water, which is why ultrasound technology constitutes an emerging technological alternative which is considered efficient and profitable compared to traditional extraction methods. The objective of this research was to determine the amplitude, time, and concentration of ethanol that guarantee a higher content of saponin through extraction assisted by ultrasound.

Materials and methods. To find the optimal extraction conditions, the response surface methodology was used using the Box Behnken design with 5 central points, taking as a response the content of saponins (expressed in oleanolic acid as it is the most abundant sapogenin).

Results. According to the results obtained, the R2 values were in agreement with the adjusted R2, showing that the data fit the model well. The results showed that ethanol concentration has a significant effect (p < 0.05) on the saponin content in the extract. Optimization showed that the optimal extraction conditions were 70% ethanol, 59% amplitude and an exposure time of 12 min. These values were obtained experimentally to compare theoretical values and found residual error percentages less than 3%. The emulsifying activity was evaluated, reporting a value of 52,495 units of emulsion activity per milliliter (UAE/mL), and the foaming stability indicated that 87.54% of the initial foam was maintained after 5 min, indicating high stability.

Conclusion. The parameters of ethanol concentration, amplitude and time were optimized in the extraction of saponins, assisted by ultrasound. Furthermore, the extract obtained had good foaming and emulsifying characteristics, suggesting its suitability for use in industry.

Keywords: sapogenin, quinoa, ultrasound extraction, second order polynomial, Box Behnken design
pub/.pdf Full text available in english in Adobe Acrobat format:
https://www.food.actapol.net/volume20/issue1/2_1_2021.pdf

https://doi.org/10.17306/J.AFS.2021.0859

For citation:

MLA Espinoza, Clara Raquel, et al. "Optimization of the ultrasoud-assisted extraction of saponins from quinoa (Chenopodium quinoa Wild) using response surface methodology." Acta Sci.Pol. Technol. Aliment. 20.1 (2021): 17-23. https://doi.org/10.17306/J.AFS.2021.0859
APA Espinoza C. R., Jaime Ruiz C. A., Flores Ramos O. P., Quispe Solano M. A., Hinostroza Quiñonez G., Saavedra Mallma N. E. (2021). Optimization of the ultrasoud-assisted extraction of saponins from quinoa (Chenopodium quinoa Wild) using response surface methodology. Acta Sci.Pol. Technol. Aliment. 20 (1), 17-23 https://doi.org/10.17306/J.AFS.2021.0859
ISO 690 ESPINOZA, Clara Raquel, et al. Optimization of the ultrasoud-assisted extraction of saponins from quinoa (Chenopodium quinoa Wild) using response surface methodology. Acta Sci.Pol. Technol. Aliment., 2021, 20.1: 17-23. https://doi.org/10.17306/J.AFS.2021.0859