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Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels

Goat milk gels (GMGs) are popular food due to their high water content, low-calorie density, appealing taste, texture enhancers, stability, and satiety-enhancing characteristics, making them ideal for achieving food security and zero hunger. The GMGs were optimized using the central composite design...

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Autores principales: Rathee, Shweta, Ojha, Ankur, Singh, Kshitij RB., Arora, Vinkel Kumar, Prabhakar, Pramod Kumar, Agnihotri, Shekhar, Chauhan, Komal, Singh, Jay, Shukla, Shruti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10559278/
https://www.ncbi.nlm.nih.gov/pubmed/37809974
http://dx.doi.org/10.1016/j.heliyon.2023.e19890
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author Rathee, Shweta
Ojha, Ankur
Singh, Kshitij RB.
Arora, Vinkel Kumar
Prabhakar, Pramod Kumar
Agnihotri, Shekhar
Chauhan, Komal
Singh, Jay
Shukla, Shruti
author_facet Rathee, Shweta
Ojha, Ankur
Singh, Kshitij RB.
Arora, Vinkel Kumar
Prabhakar, Pramod Kumar
Agnihotri, Shekhar
Chauhan, Komal
Singh, Jay
Shukla, Shruti
author_sort Rathee, Shweta
collection PubMed
description Goat milk gels (GMGs) are popular food due to their high water content, low-calorie density, appealing taste, texture enhancers, stability, and satiety-enhancing characteristics, making them ideal for achieving food security and zero hunger. The GMGs were optimized using the central composite design matrix of response surface methodology using goat milk powder (35–55 g), whole milk powder (10–25 g), and potato powder (10–15 g) as independent variables. In contrast, complex modulus, flow stress, and forward extrudability were chosen as dependent variables. The maximum value of complex modulus 33670.9 N, good flow stress 7863.6 N, and good extrudability 65.32 N was achieved under optimal conditions. The optimized goat milk gel was fortified with ascorbic acid-coated iron oxide nanoparticle (magnetic nature) decorated alginate-chitosan nanoparticles (AA-MNP@CANPs), making it nutritionally rich in an economically feasible way—the decorated AA-MNP@CANPs characterized for size, shape, crystallinity, surface charge, and optical characteristics. Finally, the optimized fortified smart GMGs were further characterized via Scanning electron microscopy, Rheology, Texture profile analysis, Fourier transforms infrared (FTIR), and X-Ray Diffraction (XRD). The fortified smart GMGs carry more nutritional diversity, targeted iron delivery, and the fundamental sustainability development goal of food security.
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spelling pubmed-105592782023-10-08 Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels Rathee, Shweta Ojha, Ankur Singh, Kshitij RB. Arora, Vinkel Kumar Prabhakar, Pramod Kumar Agnihotri, Shekhar Chauhan, Komal Singh, Jay Shukla, Shruti Heliyon Research Article Goat milk gels (GMGs) are popular food due to their high water content, low-calorie density, appealing taste, texture enhancers, stability, and satiety-enhancing characteristics, making them ideal for achieving food security and zero hunger. The GMGs were optimized using the central composite design matrix of response surface methodology using goat milk powder (35–55 g), whole milk powder (10–25 g), and potato powder (10–15 g) as independent variables. In contrast, complex modulus, flow stress, and forward extrudability were chosen as dependent variables. The maximum value of complex modulus 33670.9 N, good flow stress 7863.6 N, and good extrudability 65.32 N was achieved under optimal conditions. The optimized goat milk gel was fortified with ascorbic acid-coated iron oxide nanoparticle (magnetic nature) decorated alginate-chitosan nanoparticles (AA-MNP@CANPs), making it nutritionally rich in an economically feasible way—the decorated AA-MNP@CANPs characterized for size, shape, crystallinity, surface charge, and optical characteristics. Finally, the optimized fortified smart GMGs were further characterized via Scanning electron microscopy, Rheology, Texture profile analysis, Fourier transforms infrared (FTIR), and X-Ray Diffraction (XRD). The fortified smart GMGs carry more nutritional diversity, targeted iron delivery, and the fundamental sustainability development goal of food security. Elsevier 2023-09-06 /pmc/articles/PMC10559278/ /pubmed/37809974 http://dx.doi.org/10.1016/j.heliyon.2023.e19890 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Rathee, Shweta
Ojha, Ankur
Singh, Kshitij RB.
Arora, Vinkel Kumar
Prabhakar, Pramod Kumar
Agnihotri, Shekhar
Chauhan, Komal
Singh, Jay
Shukla, Shruti
Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels
title Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels
title_full Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels
title_fullStr Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels
title_full_unstemmed Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels
title_short Revolutionizing goat milk gels: A central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels
title_sort revolutionizing goat milk gels: a central composite design approach for synthesizing ascorbic acid-functionalized iron oxide nanoparticles decorated alginate-chitosan nanoparticles fortified smart gels
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10559278/
https://www.ncbi.nlm.nih.gov/pubmed/37809974
http://dx.doi.org/10.1016/j.heliyon.2023.e19890
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