Innovative immobilization of (3-glucosidase on amidoximated acrylic fabric integrated with magnetite Fe3O4 nanoparticles

被引:0
|
作者
Almulaiky, Yaaser Q. [1 ,2 ]
Al-Harbi, Sami A. [3 ]
机构
[1] Univ Jeddah, Appl Coll, Jeddah, Saudi Arabia
[2] Taiz Univ, Fac Appl Sci, Chem Dept, Taizi, Yemen
[3] Umm Al Qura Univ, Univ Coll Al Jamoum, Dept Chem, Mecca, Saudi Arabia
关键词
(3-Glucosidase; Acrylic fabric; Magnetite; Nanoparticles; Immobilization; BETA-GLUCOSIDASE; ENZYME; STABILITY;
D O I
10.1016/j.ijbiomac.2025.141172
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
This research presents a novel system for immobilizing (3-glucosidase on amidoximated acrylic fabric integrated with magnetite nanoparticles. Amidoximated acrylic fabric (TAC) was prepared using hydroxylamine hydrochloride, and magnetite nanoparticles were incorporated to create TAC-Fe3O4, which was subsequently activated with glutaraldehyde and used to immobilize (3-glucosidase. The immobilization efficiency reached an 89 % yield. Characterization techniques such as FTIR, SEM, and BET analysis confirmed successful immobilization, whereas kinetic studies revealed an increase in Km (7.83 mM for TAC- Fe3O4@(3-Glu vs. 5.45 mM for free enzyme). The free (3-glucosidase exhibited maximum activity at pH 5.5, while TAC-Fe3O4@(3-Glu demonstrated an optimal pH of 6.0. Similarly, the free enzyme showed maximum activity at 40 degrees C, whereas the immobilized enzyme achieved its maximum activity at 50 degrees C. Operational stability tests revealed that TAC-Fe3O4@(3-glucosidase retained 79 % of its initial activity after 10 reuse cycles and 72 % after 15 cycles. Storage stability studies demonstrated a significant advantage for the immobilized enzyme, which maintained 85 % of its activity after 8 weeks at 4 degrees C, compared with 52 % for the free enzyme. These results highlight the potential of TAC-Fe3O4 as a cost-effective and scalable system for enzyme immobilization, offering improved stability and reusability, making it highly suitable for industrial applications.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] α-Glucosidase immobilization on functionalized Fe3O4 magnetic nanoparticles for screening of enzyme inhibitors
    Cheng, Guorong
    Xing, Junpeng
    Pi, Zifeng
    Liu, Shu
    Liu, Zhiqiang
    Song, Fengrui
    CHINESE CHEMICAL LETTERS, 2019, 30 (03) : 656 - 659
  • [2] α-Glucosidase immobilization on functionalized Fe3O4 magnetic nanoparticles for screening of enzyme inhibitors
    Guorong Cheng
    Junpeng Xing
    Zifeng Pi
    Shu Liu
    Zhiqiang Liu
    Fengrui Song
    ChineseChemicalLetters, 2019, 30 (03) : 656 - 659
  • [3] MAGNETITE (FE3O4) NANOPARTICLES: ARE THEY REALLY SAFE?
    Ramirez, Lenin
    GRANJA-REVISTA DE CIENCIAS DE LA VIDA, 2015, 21 (01): : 76 - 82
  • [4] IMMOBILIZATION OF CHYMOTRYPSIN ON MAGNETIC Fe3O4 NANOPARTICLES
    Dyshlyuk, L. S.
    Novoselova, M. V.
    Rozalenok, T. A.
    FOODS AND RAW MATERIALS, 2013, 1 (02) : 85 - 88
  • [5] Remediation of arsenic contaminated groundwater with magnetite (Fe3O4) and chitosan coated Fe3O4 nanoparticles
    Ahuja, S.
    Mahanta, C.
    Sathe, S.
    Menan, L. C.
    Vipasha, M.
    ENVIRONMENTAL ARSENIC IN A CHANGING WORLD (AS2018), 2018, : 453 - 454
  • [6] Size Controllable Synthesis of Magnetite Fe3O4 Nanoparticles
    Wang, Hong
    Chen, Jian
    Yang, Ruisong
    MANUFACTURING PROCESSES AND SYSTEMS, PTS 1-2, 2011, 148-149 : 1379 - 1382
  • [7] Investigation of magnetite Fe3O4 nanoparticles for magnetic hyperthermia
    Surowiec, Zbigniew
    Miaskowski, Arkadiusz
    Budzynski, Mieczyslaw
    NUKLEONIKA, 2017, 62 (02) : 183 - 186
  • [8] Magnetite (Fe3O4) nanoparticles as adsorbents for As and Cu removal
    Iconaru, Simona Liliana
    Guegan, Regis
    Popa, Cristina Liana
    Motelica-Heino, Mikael
    Ciobanu, Carmen Steluta
    Predoi, Daniela
    APPLIED CLAY SCIENCE, 2016, 134 : 128 - 135
  • [9] Immobilization of horseradish peroxidase on Fe3O4 magnetic nanoparticles
    Mohamed, Saleh A.
    Al-Harbi, Majed H.
    Almulaiky, Yaaser Q.
    Ibrahim, Ibrahim H.
    El-Shishtawy, Reda M.
    ELECTRONIC JOURNAL OF BIOTECHNOLOGY, 2017, 27 : 84 - 90
  • [10] Magnetite (Fe3O4) nanoparticles: Synthesis, characterization and electrochemical properties
    Tipsawat, P.
    Wongpratat, U.
    Phumying, S.
    Chanlek, N.
    Chokprasombat, K.
    Maensiri, S.
    APPLIED SURFACE SCIENCE, 2018, 446 : 287 - 292