Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors

Enzymes play critical roles in surimi gelation and gel physiochemical properties. Understanding and thus tuning enzyme-related multiple factors are warranted for preparing high-quality surimi products with satisfactory textural profiles. In this study, three enzyme-related factors, i.e., Ca2+ requir...

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Published in:Food Hydrocolloids
Main Author: Zhao Y.; Li J.; Wei G.; Ying X.; Zheng B.; Gao P.; Zhou R.
Format: Article
Language:English
Published: Elsevier B.V. 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85160447128&doi=10.1016%2fj.foodhyd.2023.108895&partnerID=40&md5=29439aa7f805924c4d751ec9be3b1f6d
id 2-s2.0-85160447128
spelling 2-s2.0-85160447128
Zhao Y.; Li J.; Wei G.; Ying X.; Zheng B.; Gao P.; Zhou R.
Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
2023
Food Hydrocolloids
143

10.1016/j.foodhyd.2023.108895
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85160447128&doi=10.1016%2fj.foodhyd.2023.108895&partnerID=40&md5=29439aa7f805924c4d751ec9be3b1f6d
Enzymes play critical roles in surimi gelation and gel physiochemical properties. Understanding and thus tuning enzyme-related multiple factors are warranted for preparing high-quality surimi products with satisfactory textural profiles. In this study, three enzyme-related factors, i.e., Ca2+ required for endogenous TGase activation, whey protein concentrates (WPC) as an endogenous proteases inhibitor, and MTGase capable of catalyzing protein crosslinking, are explored regarding their gel-enhancing performance. Ca2+, WPC and MTGase at their optimal concentrations (3.5%, 5% and 1%, respectively) are introduced into surimi gels together, leading to significant increases in the hardness and WHC of the obtained surimi gels by 156% and 25%, correspondingly. Next, a mechanism underpinned by the synergetic effect of Ca2+, WPC and MTGase on improving surimi gel properties is proposed. Ca2+ could activate endogenous TGase for proteins crosslink, whereas WPC avoids the proteolytic disintegration of gel networks by inhibiting endogenous proteases, and MTGase catalyzes the ε-(γ-glutamyl) lysine linkages between ε-amino groups of lysine residues and γ-carboxyamide groups of glutamine residues on myosin heavy chains. These beneficial effects then induce a well-developed three-dimensional gel network. Collectively, we propose and validate a new strategy based on the major enzyme-related factors during gelation to improve surimi gel properties, which may provide useful guidelines on tuning the textural properties of meat-based products in the food industry. © 2023 The Authors
Elsevier B.V.
0268005X
English
Article
All Open Access; Hybrid Gold Open Access
author Zhao Y.; Li J.; Wei G.; Ying X.; Zheng B.; Gao P.; Zhou R.
spellingShingle Zhao Y.; Li J.; Wei G.; Ying X.; Zheng B.; Gao P.; Zhou R.
Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
author_facet Zhao Y.; Li J.; Wei G.; Ying X.; Zheng B.; Gao P.; Zhou R.
author_sort Zhao Y.; Li J.; Wei G.; Ying X.; Zheng B.; Gao P.; Zhou R.
title Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
title_short Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
title_full Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
title_fullStr Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
title_full_unstemmed Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
title_sort Fortification of surimi gels by tuning the synergetic effect of multiple enzyme-related factors
publishDate 2023
container_title Food Hydrocolloids
container_volume 143
container_issue
doi_str_mv 10.1016/j.foodhyd.2023.108895
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85160447128&doi=10.1016%2fj.foodhyd.2023.108895&partnerID=40&md5=29439aa7f805924c4d751ec9be3b1f6d
description Enzymes play critical roles in surimi gelation and gel physiochemical properties. Understanding and thus tuning enzyme-related multiple factors are warranted for preparing high-quality surimi products with satisfactory textural profiles. In this study, three enzyme-related factors, i.e., Ca2+ required for endogenous TGase activation, whey protein concentrates (WPC) as an endogenous proteases inhibitor, and MTGase capable of catalyzing protein crosslinking, are explored regarding their gel-enhancing performance. Ca2+, WPC and MTGase at their optimal concentrations (3.5%, 5% and 1%, respectively) are introduced into surimi gels together, leading to significant increases in the hardness and WHC of the obtained surimi gels by 156% and 25%, correspondingly. Next, a mechanism underpinned by the synergetic effect of Ca2+, WPC and MTGase on improving surimi gel properties is proposed. Ca2+ could activate endogenous TGase for proteins crosslink, whereas WPC avoids the proteolytic disintegration of gel networks by inhibiting endogenous proteases, and MTGase catalyzes the ε-(γ-glutamyl) lysine linkages between ε-amino groups of lysine residues and γ-carboxyamide groups of glutamine residues on myosin heavy chains. These beneficial effects then induce a well-developed three-dimensional gel network. Collectively, we propose and validate a new strategy based on the major enzyme-related factors during gelation to improve surimi gel properties, which may provide useful guidelines on tuning the textural properties of meat-based products in the food industry. © 2023 The Authors
publisher Elsevier B.V.
issn 0268005X
language English
format Article
accesstype All Open Access; Hybrid Gold Open Access
record_format scopus
collection Scopus
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