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Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization

Magnetic-propelled carriers comprising magnetic Fe(3)O(4)–chitosan nanoparticles were immobilized with l-asparaginase (l-ASNase). The enzyme displayed enhanced catalytic activity in a weak magnetic field, and thermal and pH stabilities. The conjugated l-ASNase presented higher thermostability and wi...

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Autores principales: Ates, Burhan, Ulu, Ahmet, Köytepe, Suleyman, Ali Noma, Samir Abbas, Kolat, Veli Serkan, Izgi, Tekin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9088402/
https://www.ncbi.nlm.nih.gov/pubmed/35558460
http://dx.doi.org/10.1039/c8ra06346j
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author Ates, Burhan
Ulu, Ahmet
Köytepe, Suleyman
Ali Noma, Samir Abbas
Kolat, Veli Serkan
Izgi, Tekin
author_facet Ates, Burhan
Ulu, Ahmet
Köytepe, Suleyman
Ali Noma, Samir Abbas
Kolat, Veli Serkan
Izgi, Tekin
author_sort Ates, Burhan
collection PubMed
description Magnetic-propelled carriers comprising magnetic Fe(3)O(4)–chitosan nanoparticles were immobilized with l-asparaginase (l-ASNase). The enzyme displayed enhanced catalytic activity in a weak magnetic field, and thermal and pH stabilities. The conjugated l-ASNase presented higher thermostability and wider range of pH stability in comparison with those of free l-ASNase. Moreover, the reusability of conjugated l-ASNase significantly improved after immobilization and it retained 60.5% of its initial activity after undergoing 16 cycles. The conjugated l-ASNase maintained more than 50% and 48% initial activity after 4 weeks of storage at 4 °C and room temperature, respectively. Furthermore, we reveal that the activity of conjugated l-ASNase onto magnetic Fe(3)O(4)–chitosan particles increased by about 3-fold in the weak magnetic field at certain frequencies and flux density compared with that of free l-ASNase. Considering these excellent attributes, the magnetic-propelled mechanism in the transporting and activation of l-ASNase can be used by enhancing the catalytic activity, stability, and efficiency in vital implications for medicinal biotechnology.
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spelling pubmed-90884022022-05-11 Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization Ates, Burhan Ulu, Ahmet Köytepe, Suleyman Ali Noma, Samir Abbas Kolat, Veli Serkan Izgi, Tekin RSC Adv Chemistry Magnetic-propelled carriers comprising magnetic Fe(3)O(4)–chitosan nanoparticles were immobilized with l-asparaginase (l-ASNase). The enzyme displayed enhanced catalytic activity in a weak magnetic field, and thermal and pH stabilities. The conjugated l-ASNase presented higher thermostability and wider range of pH stability in comparison with those of free l-ASNase. Moreover, the reusability of conjugated l-ASNase significantly improved after immobilization and it retained 60.5% of its initial activity after undergoing 16 cycles. The conjugated l-ASNase maintained more than 50% and 48% initial activity after 4 weeks of storage at 4 °C and room temperature, respectively. Furthermore, we reveal that the activity of conjugated l-ASNase onto magnetic Fe(3)O(4)–chitosan particles increased by about 3-fold in the weak magnetic field at certain frequencies and flux density compared with that of free l-ASNase. Considering these excellent attributes, the magnetic-propelled mechanism in the transporting and activation of l-ASNase can be used by enhancing the catalytic activity, stability, and efficiency in vital implications for medicinal biotechnology. The Royal Society of Chemistry 2018-10-23 /pmc/articles/PMC9088402/ /pubmed/35558460 http://dx.doi.org/10.1039/c8ra06346j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ates, Burhan
Ulu, Ahmet
Köytepe, Suleyman
Ali Noma, Samir Abbas
Kolat, Veli Serkan
Izgi, Tekin
Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization
title Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization
title_full Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization
title_fullStr Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization
title_full_unstemmed Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization
title_short Magnetic-propelled Fe(3)O(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization
title_sort magnetic-propelled fe(3)o(4)–chitosan carriers enhance l-asparaginase catalytic activity: a promising strategy for enzyme immobilization
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9088402/
https://www.ncbi.nlm.nih.gov/pubmed/35558460
http://dx.doi.org/10.1039/c8ra06346j
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