The antioxidant activity of baked foods is of utmost interest when envisioning enhancing their health benefits. Incorporating functional ingredients is challenging since their bioactivity naturally declines during baking. In this study, 3D food printing and design of experiments are employed to clarify how the antioxidant activity of cookies enriched with encapsulated polyphenols can be maximized. A synergistic effect between encapsulation, time, temperature, number of layers, and infill of the printed cookies was observed on the moisture and antioxidant activity. Four-layer cookies with 30% infill provided the highest bioactivity and phenolic content if baked for 10 min and at 180 °C. The bioacitivity and total phenolic content improved by 115% and 173%, respectively, comparing to free extract cookies.Moreover, the proper combination of the design and baking variables allowed to vary the bioactivity of cooked cookies (moisture 3–5%) between 300 and 700 μmolTR/gdry. The additive manufacture of foods with interconnected pores could accelerate baking and browning, or reduce thermal degradation. This represents a potential approach to enhance the functional and healthy properties of cookies or other thermal treated bioactive food products.

Oliveira, S. M., Gruppi, A., Vieira, M. V., Matos, G. S., Vicente, A. A., Teixeira, J. A. C., Fucinos, P., Spigno, G., Pastrana, L. M., How additive manufacturing can boost the bioactivity of baked functional foods, <<JOURNAL OF FOOD ENGINEERING>>, 2020; 2020 (N/A): 110394-N/A. [doi:10.1016/j.jfoodeng.2020.110394] [http://hdl.handle.net/10807/165362]

How additive manufacturing can boost the bioactivity of baked functional foods

Gruppi, Alice;Spigno, Giorgia;
2020

Abstract

The antioxidant activity of baked foods is of utmost interest when envisioning enhancing their health benefits. Incorporating functional ingredients is challenging since their bioactivity naturally declines during baking. In this study, 3D food printing and design of experiments are employed to clarify how the antioxidant activity of cookies enriched with encapsulated polyphenols can be maximized. A synergistic effect between encapsulation, time, temperature, number of layers, and infill of the printed cookies was observed on the moisture and antioxidant activity. Four-layer cookies with 30% infill provided the highest bioactivity and phenolic content if baked for 10 min and at 180 °C. The bioacitivity and total phenolic content improved by 115% and 173%, respectively, comparing to free extract cookies.Moreover, the proper combination of the design and baking variables allowed to vary the bioactivity of cooked cookies (moisture 3–5%) between 300 and 700 μmolTR/gdry. The additive manufacture of foods with interconnected pores could accelerate baking and browning, or reduce thermal degradation. This represents a potential approach to enhance the functional and healthy properties of cookies or other thermal treated bioactive food products.
2020
Inglese
Oliveira, S. M., Gruppi, A., Vieira, M. V., Matos, G. S., Vicente, A. A., Teixeira, J. A. C., Fucinos, P., Spigno, G., Pastrana, L. M., How additive manufacturing can boost the bioactivity of baked functional foods, <<JOURNAL OF FOOD ENGINEERING>>, 2020; 2020 (N/A): 110394-N/A. [doi:10.1016/j.jfoodeng.2020.110394] [http://hdl.handle.net/10807/165362]
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10807/165362
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 17
  • ???jsp.display-item.citation.isi??? 14
social impact