Effective immobilization of lactate dehydrogenase onto mesoporous silica
- PMID: 34962677
- DOI: 10.1002/bab.2304
Effective immobilization of lactate dehydrogenase onto mesoporous silica
Abstract
This study presents that covalent immobilization technique has been utilized for the immobilization of l-lactate dehydrogenase (l-LDH) from porcine on mesoporous silica. To develop mesoporous silica as support material for use in l-LDH immobilization, the particle surfaces were functionalized with 3-aminopropyltrimethoxysilane and further conjugated with glutaraldehyde. The effect of some parameters such as glutaraldehyde concentration, immobilization pH, initial enzyme concentration, and immobilization time was investigated and the optimum conditions for these parameters were determined as 1% (w/v), pH 8.0, 1 mg/ml, and 120 min, respectively. The maximum working pH and temperature for the oxidation of lactate to pyruvate reaction were determined as 10.0 and 35°C for free and 9.0 and 40°C for immobilized l-LDH, respectively. The kinetic parameters (Km and Vmax ) of l-LDH for the oxidation of lactate to pyruvate reaction were examined as 1.02 mM and 7.58 U/mg protein for free and 0.635 mM and 1.7 U/mg protein for immobilized l-LDH, respectively. Moreover, the immobilized l-LDH was 1.3-fold more stable than free l-LDH at 25°C according to calculated t1/2 values. The immobilized l-LDH retained 80% of its initial activity in a batch reactor after 14 reuses.
Keywords: immobilization; lactate dehydrogenase; mesoporous silica; thermal stabilization.
© 2021 International Union of Biochemistry and Molecular Biology, Inc.
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References
REFERENCES
-
- Wang S, Su P, Huang J, Wu J, Yang Yi. Magnetic nanoparticles coated with immobilized alkaline phosphatase for enzymolysis and enzyme inhibition assays. J. Mater. Chem. B. 2013;1:1749-54.
-
- Yildirim D, Alagöz D, Toprak A, Tükel S, Fernandez-Lafuente R. Tuning dimeric formate dehydrogenases reduction/oxidation activities by immobilization. Process Biochem. 2019;85:97-105.
-
- Zahirinejad S, Hemmati R, Homaei A, Dinari A, Hosseinkhani S, Mohammadi S, Vianello F. Nano-organic supports for enzyme immobilization: Scopes and perspectives. Colloids Surf., B. 2021;204: 111774.
-
- Liu D-M, Dong C. Recent advances in nano-carrier immobilized enzymes and their applications. Process Biochem. 2020;92:464-75.
-
- Manoel EA, Pinto M, Dos Santos JCS, Tacias-Pascacio VG, Freire DMG, Pinto JC, Fernandez-Lafuente R. Design of a coreâ “shell support to improve lipase features by immobilization. RSC Adv. 2016;6:62814-24.
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