4.7 Article

Optimisation of the ultrasound-assisted extraction of betalains and polyphenols from Amaranthus hypochondriacus var. Nutrisol

Journal

ULTRASONICS SONOCHEMISTRY
Volume 77, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.ultsonch.2021.105680

Keywords

Ultrasound-assisted extraction; Amaranthus; Betalains; Polyphenols

Funding

  1. National Council of Science and Technology (CONACYT, Mexico) [250804]
  2. PROINNOVA

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This study optimized the ultrasound-assisted extraction of bioactive compounds from Amaranthus hypochondriacus var. Nutrisol using response surface methodology. The results showed that temperature and ultrasonic power densities significantly affected the extraction of betalains, polyphenols, and other bioactive compounds. The optimal extraction conditions were found to be at 41.80 degrees C and 188.84 mW/mL.
The present study optimised the ultrasound-assisted extraction (UAE) of bioactive compounds from Amaranthus hypochondriacus var. Nutrisol. Influence of temperature (25.86-54.14 degrees C) and ultrasonic power densities (UPD) (76.01-273.99 mW/mL) on total betalains (BT), betacyanins (BC), betaxanthins (BX), total polyphenols (TP), antioxidant activity (AA), colour parameters (L*, a*, and b*), amaranthine (A), and isoamaranthine (IA) were evaluated using response surface methodology. Moreover, betalain extraction kinetics and mass transfer coefficients (K(L)a) were determined for each experimental condition. BT, BC, BX, TP, AA, b*, KLa, and A were significantly affected (p < 0.05) by temperature extraction and UPD, whereas L*, a*, and IA were only affected (p < 0.05) by temperature. All response models were significantly validated with regression coefficients (R-2) ranging from 87.46 to 99.29%. BT, A, IA, and K(L)a in UAE were 1.38, 1.65, 1.50, and 29.93 times higher than determined using conventional extraction, respectively. Optimal UAE conditions were obtained at 41.80 degrees C and 188.84 mW/mL using the desired function methodology. Under these conditions, the experimental values for BC, BX, BT, TP, AA, L*, a*, b*, K(L)a, A, and IA were closely related to the predicted values, indicating the suitability of the developed quadratic models. This study proposes a simple and efficient UAE method to obtain betalains and polyphenols with high antioxidant activity, which can be used in several applications within the food industry.

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