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Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage

Mussel (Mytilus edulis) is an economic shellfish with a high nutritional value. Due to the high amount of protein and fat, fresh mussels are susceptible to spoilage during storage. In the present study, how a combination of pullulan, acidic electrolyzed water (AEW), and stable chlorine dioxide (ClO(...

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Autores principales: Gao, Yuanpei, Jiang, Huili, Lv, Dandan, Benjakul, Soottawat, Zhang, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8392224/
https://www.ncbi.nlm.nih.gov/pubmed/34441673
http://dx.doi.org/10.3390/foods10081896
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author Gao, Yuanpei
Jiang, Huili
Lv, Dandan
Benjakul, Soottawat
Zhang, Bin
author_facet Gao, Yuanpei
Jiang, Huili
Lv, Dandan
Benjakul, Soottawat
Zhang, Bin
author_sort Gao, Yuanpei
collection PubMed
description Mussel (Mytilus edulis) is an economic shellfish with a high nutritional value. Due to the high amount of protein and fat, fresh mussels are susceptible to spoilage during storage. In the present study, how a combination of pullulan, acidic electrolyzed water (AEW), and stable chlorine dioxide (ClO(2)) ice-glazing treatments affect the quality of mussels was investigated during 90 days of frozen storage. The results indicate that the combined glazing treatment effectively maintained the mussel muscle quality during storage mainly due to its air barrier actions. Mussel samples coated with AEW and ClO(2) showed lower aerobic plate counts than other groups, resulting from the strong antibacterial action of AEW and ClO(2). After 90 days of frozen storage, the mussel glazed with a combination of AEW, ClO(2), and pullulan solutions showed better texture properties, higher content of myofibrillar proteins, higher Ca(2+)-ATPase activity, and more SH groups than the other glazing treatments. The water-holding capacity and SEM observations showed that the pullulan glazing efficiently inhibited the physical damage caused by the frozen and long-term storage, which mainly contributed to the high amount of hydrophilic hydroxyl groups in the muscle tissues. The present study supports the use of a combination of cryoprotectants for extending the shelf-life of frozen mussel products during long-term storage.
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spelling pubmed-83922242021-08-28 Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage Gao, Yuanpei Jiang, Huili Lv, Dandan Benjakul, Soottawat Zhang, Bin Foods Article Mussel (Mytilus edulis) is an economic shellfish with a high nutritional value. Due to the high amount of protein and fat, fresh mussels are susceptible to spoilage during storage. In the present study, how a combination of pullulan, acidic electrolyzed water (AEW), and stable chlorine dioxide (ClO(2)) ice-glazing treatments affect the quality of mussels was investigated during 90 days of frozen storage. The results indicate that the combined glazing treatment effectively maintained the mussel muscle quality during storage mainly due to its air barrier actions. Mussel samples coated with AEW and ClO(2) showed lower aerobic plate counts than other groups, resulting from the strong antibacterial action of AEW and ClO(2). After 90 days of frozen storage, the mussel glazed with a combination of AEW, ClO(2), and pullulan solutions showed better texture properties, higher content of myofibrillar proteins, higher Ca(2+)-ATPase activity, and more SH groups than the other glazing treatments. The water-holding capacity and SEM observations showed that the pullulan glazing efficiently inhibited the physical damage caused by the frozen and long-term storage, which mainly contributed to the high amount of hydrophilic hydroxyl groups in the muscle tissues. The present study supports the use of a combination of cryoprotectants for extending the shelf-life of frozen mussel products during long-term storage. MDPI 2021-08-16 /pmc/articles/PMC8392224/ /pubmed/34441673 http://dx.doi.org/10.3390/foods10081896 Text en © 2021 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
Gao, Yuanpei
Jiang, Huili
Lv, Dandan
Benjakul, Soottawat
Zhang, Bin
Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage
title Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage
title_full Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage
title_fullStr Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage
title_full_unstemmed Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage
title_short Shelf-Life of Half-Shell Mussel (Mytilus edulis) as Affected by Pullulan, Acidic Electrolyzed Water, and Stable Chlorine Dioxide Combined Ice-Glazing during Frozen Storage
title_sort shelf-life of half-shell mussel (mytilus edulis) as affected by pullulan, acidic electrolyzed water, and stable chlorine dioxide combined ice-glazing during frozen storage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8392224/
https://www.ncbi.nlm.nih.gov/pubmed/34441673
http://dx.doi.org/10.3390/foods10081896
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