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Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying

Native potato clones grown in Peru contain bioactive compounds beneficial to human health. This study aimed to optimize the spray-drying nanoencapsulation of native potato phenolic extracts utilizing a central composite design and response surface methodology, obtaining the optimal treatment to an i...

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Autores principales: Ligarda-Samanez, Carlos A., Choque-Quispe, David, Moscoso-Moscoso, Elibet, Palomino-Rincón, Henry, Taipe-Pardo, Fredy, Landa, John Peter Aguirre, Arévalo-Quijano, José C., Muñoz-Saenz, Jenny C., Quispe-Quezada, Uriel R., Huamán-Carrión, Mary L., Gutiérrez-Gómez, Edgar, Sucari-León, Reynaldo, Luciano-Alipio, Rober, Muñoz-Saenz, Judy M., Guzmán Gutiérrez, Rodrigo J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10343917/
https://www.ncbi.nlm.nih.gov/pubmed/37446623
http://dx.doi.org/10.3390/molecules28134961
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author Ligarda-Samanez, Carlos A.
Choque-Quispe, David
Moscoso-Moscoso, Elibet
Palomino-Rincón, Henry
Taipe-Pardo, Fredy
Landa, John Peter Aguirre
Arévalo-Quijano, José C.
Muñoz-Saenz, Jenny C.
Quispe-Quezada, Uriel R.
Huamán-Carrión, Mary L.
Gutiérrez-Gómez, Edgar
Sucari-León, Reynaldo
Luciano-Alipio, Rober
Muñoz-Saenz, Judy M.
Guzmán Gutiérrez, Rodrigo J.
author_facet Ligarda-Samanez, Carlos A.
Choque-Quispe, David
Moscoso-Moscoso, Elibet
Palomino-Rincón, Henry
Taipe-Pardo, Fredy
Landa, John Peter Aguirre
Arévalo-Quijano, José C.
Muñoz-Saenz, Jenny C.
Quispe-Quezada, Uriel R.
Huamán-Carrión, Mary L.
Gutiérrez-Gómez, Edgar
Sucari-León, Reynaldo
Luciano-Alipio, Rober
Muñoz-Saenz, Judy M.
Guzmán Gutiérrez, Rodrigo J.
author_sort Ligarda-Samanez, Carlos A.
collection PubMed
description Native potato clones grown in Peru contain bioactive compounds beneficial to human health. This study aimed to optimize the spray-drying nanoencapsulation of native potato phenolic extracts utilizing a central composite design and response surface methodology, obtaining the optimal treatment to an inlet temperature of 120 °C and an airflow of 141 L/h in the nano spray dryer B-90, which allowed maximizing the yield of encapsulation, antioxidant capacity (DPPH), encapsulation efficiency (EE), total phenolic compounds, and total flavonoids; on the other hand, it allowed minimizing hygroscopicity, water activity (Aw), and moisture. Instrumental characterization of the nanocapsules was also carried out, observing a gain in lightness, reddening of the color, and spherical nanoparticles of heterogeneous size (133.09–165.13 nm) with a negative ζ potential. Thermal, infrared, and morphological analyses confirmed the encapsulation of the core in the wall materials. Furthermore, an in vitro release study of phenolic compounds in an aqueous solution achieved a maximum value of 9.86 mg GAE/g after 12 h. Finally, the obtained nanocapsules could be used in the food and pharmaceutical industry.
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spelling pubmed-103439172023-07-14 Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying Ligarda-Samanez, Carlos A. Choque-Quispe, David Moscoso-Moscoso, Elibet Palomino-Rincón, Henry Taipe-Pardo, Fredy Landa, John Peter Aguirre Arévalo-Quijano, José C. Muñoz-Saenz, Jenny C. Quispe-Quezada, Uriel R. Huamán-Carrión, Mary L. Gutiérrez-Gómez, Edgar Sucari-León, Reynaldo Luciano-Alipio, Rober Muñoz-Saenz, Judy M. Guzmán Gutiérrez, Rodrigo J. Molecules Article Native potato clones grown in Peru contain bioactive compounds beneficial to human health. This study aimed to optimize the spray-drying nanoencapsulation of native potato phenolic extracts utilizing a central composite design and response surface methodology, obtaining the optimal treatment to an inlet temperature of 120 °C and an airflow of 141 L/h in the nano spray dryer B-90, which allowed maximizing the yield of encapsulation, antioxidant capacity (DPPH), encapsulation efficiency (EE), total phenolic compounds, and total flavonoids; on the other hand, it allowed minimizing hygroscopicity, water activity (Aw), and moisture. Instrumental characterization of the nanocapsules was also carried out, observing a gain in lightness, reddening of the color, and spherical nanoparticles of heterogeneous size (133.09–165.13 nm) with a negative ζ potential. Thermal, infrared, and morphological analyses confirmed the encapsulation of the core in the wall materials. Furthermore, an in vitro release study of phenolic compounds in an aqueous solution achieved a maximum value of 9.86 mg GAE/g after 12 h. Finally, the obtained nanocapsules could be used in the food and pharmaceutical industry. MDPI 2023-06-24 /pmc/articles/PMC10343917/ /pubmed/37446623 http://dx.doi.org/10.3390/molecules28134961 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ligarda-Samanez, Carlos A.
Choque-Quispe, David
Moscoso-Moscoso, Elibet
Palomino-Rincón, Henry
Taipe-Pardo, Fredy
Landa, John Peter Aguirre
Arévalo-Quijano, José C.
Muñoz-Saenz, Jenny C.
Quispe-Quezada, Uriel R.
Huamán-Carrión, Mary L.
Gutiérrez-Gómez, Edgar
Sucari-León, Reynaldo
Luciano-Alipio, Rober
Muñoz-Saenz, Judy M.
Guzmán Gutiérrez, Rodrigo J.
Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying
title Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying
title_full Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying
title_fullStr Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying
title_full_unstemmed Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying
title_short Nanoencapsulation of Phenolic Extracts from Native Potato Clones (Solanum tuberosum spp. andigena) by Spray Drying
title_sort nanoencapsulation of phenolic extracts from native potato clones (solanum tuberosum spp. andigena) by spray drying
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10343917/
https://www.ncbi.nlm.nih.gov/pubmed/37446623
http://dx.doi.org/10.3390/molecules28134961
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