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Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization

Based on the excellent biocompatibility of collagen, collagen was extracted from pig skin by acid-enzymatic method. The films were prepared by the self-aggregation behavior of collagen, and the catalase was immobilized by adsorption, cross-linking and embedding. The experiment investigated the effec...

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Autores principales: He, Li, Lan, Wenting, Zhao, Yuqing, Chen, Shujuan, Liu, Shuliang, Cen, Liyuan, Cao, Shu, Dong, Lei, Jin, Ruoyun, Liu, Yaowen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049748/
https://www.ncbi.nlm.nih.gov/pubmed/35493877
http://dx.doi.org/10.1039/c9ra10794k
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author He, Li
Lan, Wenting
Zhao, Yuqing
Chen, Shujuan
Liu, Shuliang
Cen, Liyuan
Cao, Shu
Dong, Lei
Jin, Ruoyun
Liu, Yaowen
author_facet He, Li
Lan, Wenting
Zhao, Yuqing
Chen, Shujuan
Liu, Shuliang
Cen, Liyuan
Cao, Shu
Dong, Lei
Jin, Ruoyun
Liu, Yaowen
author_sort He, Li
collection PubMed
description Based on the excellent biocompatibility of collagen, collagen was extracted from pig skin by acid-enzymatic method. The films were prepared by the self-aggregation behavior of collagen, and the catalase was immobilized by adsorption, cross-linking and embedding. The experiment investigated the effects of glutaraldehyde on the mechanical properties, external sensory properties, and denaturation temperature of the films. The results showed that self-aggregating material could maintain the triple helix structure of pig skin collagen. The self-aggregation treatment and cross-linking treatment can improve the mechanical properties to 53 MPa, while the glutaraldehyde cross-linking agent can increase the denaturation temperature of the pig skin collagen self-aggregating membrane by 20.35% to 84.48 °C. This means that its application to immobilized catalase has better stability. The comparison shows that the catalase immobilized by the adsorption method has strong activity and high operational stability, and the cross-linking agent glutaraldehyde and the initial enzyme concentration have a significant effect on the immobilization, and the activity can reach 175 U g(−1). After 16 uses of the film, the catalase was completely inactivated. This study provides a reference for the preparation of a catalase sensor that can be used to detect hydrogen peroxide in food by a catalase sensor.
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spelling pubmed-90497482022-04-29 Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization He, Li Lan, Wenting Zhao, Yuqing Chen, Shujuan Liu, Shuliang Cen, Liyuan Cao, Shu Dong, Lei Jin, Ruoyun Liu, Yaowen RSC Adv Chemistry Based on the excellent biocompatibility of collagen, collagen was extracted from pig skin by acid-enzymatic method. The films were prepared by the self-aggregation behavior of collagen, and the catalase was immobilized by adsorption, cross-linking and embedding. The experiment investigated the effects of glutaraldehyde on the mechanical properties, external sensory properties, and denaturation temperature of the films. The results showed that self-aggregating material could maintain the triple helix structure of pig skin collagen. The self-aggregation treatment and cross-linking treatment can improve the mechanical properties to 53 MPa, while the glutaraldehyde cross-linking agent can increase the denaturation temperature of the pig skin collagen self-aggregating membrane by 20.35% to 84.48 °C. This means that its application to immobilized catalase has better stability. The comparison shows that the catalase immobilized by the adsorption method has strong activity and high operational stability, and the cross-linking agent glutaraldehyde and the initial enzyme concentration have a significant effect on the immobilization, and the activity can reach 175 U g(−1). After 16 uses of the film, the catalase was completely inactivated. This study provides a reference for the preparation of a catalase sensor that can be used to detect hydrogen peroxide in food by a catalase sensor. The Royal Society of Chemistry 2020-02-18 /pmc/articles/PMC9049748/ /pubmed/35493877 http://dx.doi.org/10.1039/c9ra10794k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
He, Li
Lan, Wenting
Zhao, Yuqing
Chen, Shujuan
Liu, Shuliang
Cen, Liyuan
Cao, Shu
Dong, Lei
Jin, Ruoyun
Liu, Yaowen
Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization
title Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization
title_full Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization
title_fullStr Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization
title_full_unstemmed Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization
title_short Characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization
title_sort characterization of biocompatible pig skin collagen and application of collagen-based films for enzyme immobilization
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049748/
https://www.ncbi.nlm.nih.gov/pubmed/35493877
http://dx.doi.org/10.1039/c9ra10794k
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