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Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking

BACKGROUND: Immobilization is an approach in industry to improve stability and reusability of urease. The efficiency of this technique depends on the type of membrane and the method of stabilization. METHODS: The PEI-modified egg shell membrane was used to immobilize urease by absorption and glutara...

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Autores principales: Morovvat, Fatemeh, Samsam Shariat, Seyed Ziae Aldin, Davoudi, Maryam, Norouzian, Dariush
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pasteur Institute of Iran 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8987411/
https://www.ncbi.nlm.nih.gov/pubmed/34837893
http://dx.doi.org/10.52547/ibj.26.2.132
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author Morovvat, Fatemeh
Samsam Shariat, Seyed Ziae Aldin
Davoudi, Maryam
Norouzian, Dariush
author_facet Morovvat, Fatemeh
Samsam Shariat, Seyed Ziae Aldin
Davoudi, Maryam
Norouzian, Dariush
author_sort Morovvat, Fatemeh
collection PubMed
description BACKGROUND: Immobilization is an approach in industry to improve stability and reusability of urease. The efficiency of this technique depends on the type of membrane and the method of stabilization. METHODS: The PEI-modified egg shell membrane was used to immobilize urease by absorption and glutaraldehyde cross-linking methods. The membranes were characterized by FTIR and AFM, and Nessler method was applied to measure the kinetic of the immobilized enzymes. Finally, the storage stability (6 °C for 21 days) and reusability (until enzyme activity reached to zero) of the immobilized enzymes were investigated. RESULTS: Based on FTIR, three new peaks were observed in both the absorption- (at 1389.7, 1230.8, and 1074.2 cm(-1)) and the cross-linking (at 1615-1690, 1392.7, 1450 cm(-1)) immobilized enzymes. The surface roughness of the native membrane was altered after PEI treatment and enzyme immobilization. The optimal pH of cross-linking immobilized enzymes was shifted to a more neutral pH, while it was alkaline in adsorption-immobilized and free enzymes. The reaction time decreased in all immobilized enzymes (100 min for free enzyme vs. 60 and 30 min after immobilizing by adsorption and cross-linking methods, respectively). The optimal temperature for all enzymes was 70 °C and they had a higher K(m )and a lower V(max) than free enzyme. The stability and reusability of urease were improved by both methods. CONCLUSION: Our findings propose these approaches as promising ways to enhance the urease efficiency for its applications in industries and medicines.
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spelling pubmed-89874112022-04-19 Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking Morovvat, Fatemeh Samsam Shariat, Seyed Ziae Aldin Davoudi, Maryam Norouzian, Dariush Iran Biomed J Full Length BACKGROUND: Immobilization is an approach in industry to improve stability and reusability of urease. The efficiency of this technique depends on the type of membrane and the method of stabilization. METHODS: The PEI-modified egg shell membrane was used to immobilize urease by absorption and glutaraldehyde cross-linking methods. The membranes were characterized by FTIR and AFM, and Nessler method was applied to measure the kinetic of the immobilized enzymes. Finally, the storage stability (6 °C for 21 days) and reusability (until enzyme activity reached to zero) of the immobilized enzymes were investigated. RESULTS: Based on FTIR, three new peaks were observed in both the absorption- (at 1389.7, 1230.8, and 1074.2 cm(-1)) and the cross-linking (at 1615-1690, 1392.7, 1450 cm(-1)) immobilized enzymes. The surface roughness of the native membrane was altered after PEI treatment and enzyme immobilization. The optimal pH of cross-linking immobilized enzymes was shifted to a more neutral pH, while it was alkaline in adsorption-immobilized and free enzymes. The reaction time decreased in all immobilized enzymes (100 min for free enzyme vs. 60 and 30 min after immobilizing by adsorption and cross-linking methods, respectively). The optimal temperature for all enzymes was 70 °C and they had a higher K(m )and a lower V(max) than free enzyme. The stability and reusability of urease were improved by both methods. CONCLUSION: Our findings propose these approaches as promising ways to enhance the urease efficiency for its applications in industries and medicines. Pasteur Institute of Iran 2022-03 2021-11-27 /pmc/articles/PMC8987411/ /pubmed/34837893 http://dx.doi.org/10.52547/ibj.26.2.132 Text en https://creativecommons.org/licenses/by/3.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/ (https://creativecommons.org/licenses/by/3.0/) ) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Length
Morovvat, Fatemeh
Samsam Shariat, Seyed Ziae Aldin
Davoudi, Maryam
Norouzian, Dariush
Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking
title Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking
title_full Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking
title_fullStr Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking
title_full_unstemmed Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking
title_short Immobilization of Urease onto Modified Egg Shell Membrane through Cross Linking
title_sort immobilization of urease onto modified egg shell membrane through cross linking
topic Full Length
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8987411/
https://www.ncbi.nlm.nih.gov/pubmed/34837893
http://dx.doi.org/10.52547/ibj.26.2.132
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AT davoudimaryam immobilizationofureaseontomodifiedeggshellmembranethroughcrosslinking
AT norouziandariush immobilizationofureaseontomodifiedeggshellmembranethroughcrosslinking