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Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes

Iron deficiency leads to ferropenic anemia in humans. This study aimed to encapsulate iron-rich ovine and bovine erythrocytes using tara gum and native potato starch as matrices. Solutions containing 20% erythrocytes and different proportions of encapsulants (5, 10, and 20%) were used, followed by s...

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Autores principales: Ligarda-Samanez, Carlos A., Moscoso-Moscoso, Elibet, Choque-Quispe, David, Ramos-Pacheco, Betsy S., Arévalo-Quijano, José C., la Cruz, Germán De, Huamán-Carrión, Mary L., Quispe-Quezada, Uriel R., Gutiérrez-Gómez, Edgar, Cabel-Moscoso, Domingo J., Muñoz-Melgarejo, Mauricio, Calsina Ponce, Wilber César
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10575126/
https://www.ncbi.nlm.nih.gov/pubmed/37836034
http://dx.doi.org/10.3390/polym15193985
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author Ligarda-Samanez, Carlos A.
Moscoso-Moscoso, Elibet
Choque-Quispe, David
Ramos-Pacheco, Betsy S.
Arévalo-Quijano, José C.
la Cruz, Germán De
Huamán-Carrión, Mary L.
Quispe-Quezada, Uriel R.
Gutiérrez-Gómez, Edgar
Cabel-Moscoso, Domingo J.
Muñoz-Melgarejo, Mauricio
Calsina Ponce, Wilber César
author_facet Ligarda-Samanez, Carlos A.
Moscoso-Moscoso, Elibet
Choque-Quispe, David
Ramos-Pacheco, Betsy S.
Arévalo-Quijano, José C.
la Cruz, Germán De
Huamán-Carrión, Mary L.
Quispe-Quezada, Uriel R.
Gutiérrez-Gómez, Edgar
Cabel-Moscoso, Domingo J.
Muñoz-Melgarejo, Mauricio
Calsina Ponce, Wilber César
author_sort Ligarda-Samanez, Carlos A.
collection PubMed
description Iron deficiency leads to ferropenic anemia in humans. This study aimed to encapsulate iron-rich ovine and bovine erythrocytes using tara gum and native potato starch as matrices. Solutions containing 20% erythrocytes and different proportions of encapsulants (5, 10, and 20%) were used, followed by spray drying at 120 and 140 °C. Iron content in erythrocytes ranged between 2.24 and 2.52 mg of Fe/g; microcapsules ranged from 1.54 to 2.02 mg of Fe/g. Yields varied from 50.55 to 63.40%, and temperature and encapsulant proportion affected moisture and water activity. Various red hues, sizes, and shapes were observed in the microcapsules. SEM-EDS analysis revealed the surface presence of iron in microcapsules with openings on their exterior, along with a negative zeta potential. Thermal and infrared analyses confirmed core encapsulation within the matrices. Iron release varied between 92.30 and 93.13% at 120 min. Finally, the most effective treatments were those with higher encapsulant percentages and dried at elevated temperatures, which could enable their utilization in functional food fortification to combat anemia in developing countries.
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spelling pubmed-105751262023-10-14 Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes Ligarda-Samanez, Carlos A. Moscoso-Moscoso, Elibet Choque-Quispe, David Ramos-Pacheco, Betsy S. Arévalo-Quijano, José C. la Cruz, Germán De Huamán-Carrión, Mary L. Quispe-Quezada, Uriel R. Gutiérrez-Gómez, Edgar Cabel-Moscoso, Domingo J. Muñoz-Melgarejo, Mauricio Calsina Ponce, Wilber César Polymers (Basel) Article Iron deficiency leads to ferropenic anemia in humans. This study aimed to encapsulate iron-rich ovine and bovine erythrocytes using tara gum and native potato starch as matrices. Solutions containing 20% erythrocytes and different proportions of encapsulants (5, 10, and 20%) were used, followed by spray drying at 120 and 140 °C. Iron content in erythrocytes ranged between 2.24 and 2.52 mg of Fe/g; microcapsules ranged from 1.54 to 2.02 mg of Fe/g. Yields varied from 50.55 to 63.40%, and temperature and encapsulant proportion affected moisture and water activity. Various red hues, sizes, and shapes were observed in the microcapsules. SEM-EDS analysis revealed the surface presence of iron in microcapsules with openings on their exterior, along with a negative zeta potential. Thermal and infrared analyses confirmed core encapsulation within the matrices. Iron release varied between 92.30 and 93.13% at 120 min. Finally, the most effective treatments were those with higher encapsulant percentages and dried at elevated temperatures, which could enable their utilization in functional food fortification to combat anemia in developing countries. MDPI 2023-10-04 /pmc/articles/PMC10575126/ /pubmed/37836034 http://dx.doi.org/10.3390/polym15193985 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.
Moscoso-Moscoso, Elibet
Choque-Quispe, David
Ramos-Pacheco, Betsy S.
Arévalo-Quijano, José C.
la Cruz, Germán De
Huamán-Carrión, Mary L.
Quispe-Quezada, Uriel R.
Gutiérrez-Gómez, Edgar
Cabel-Moscoso, Domingo J.
Muñoz-Melgarejo, Mauricio
Calsina Ponce, Wilber César
Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes
title Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes
title_full Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes
title_fullStr Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes
title_full_unstemmed Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes
title_short Native Potato Starch and Tara Gum as Polymeric Matrices to Obtain Iron-Loaded Microcapsules from Ovine and Bovine Erythrocytes
title_sort native potato starch and tara gum as polymeric matrices to obtain iron-loaded microcapsules from ovine and bovine erythrocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10575126/
https://www.ncbi.nlm.nih.gov/pubmed/37836034
http://dx.doi.org/10.3390/polym15193985
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