Recombinant Chlamydomonas reinhardtii chlorophyllase 1 (CrCLH1) that could catalyze chlorophyll hydrolysis to chlorophyllide and phytol in vitro was successfully expressed in Escherichia coli. The recombinant CrCLH1 was immobilized through covalent binding with a cubic (3-aminopropyl) triethoxysilane (APTES) coating on magnetic iron oxide nanoparticles (MIONPs), which led to markedly improved enzyme performance and decreased biocatalyst costs for potential industrial application. The immobilized enzyme exhibited a high immobilization yield (98.99 ± 0.91 mg/g of gel) and a chlorophyllase assay confirmed that the immobilized recombinant CrCLH1 retained enzymatic activity (722.3 ± 50.3 U/g of gel). Biochemical analysis of the immobilized enzym...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
Novel hybrid magnetic cross-linked enzyme aggregates of phenylalanine ammonia lyase (HM-PAL-CLEAs) w...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
[[abstract]]Recombinant Chlamydomonas reinhardtii chlorophyllase 1 (CrCLH1) that could catalyze chlo...
Recombinant Brassica oleracea chlorophyllase 1 (BoCLH1) with a protein molecular weight of 38.63 kDa...
Enzymes have a wide variety of applications in diverse biotechnological fields, and the immobilizati...
Enzymes are versatile catalysts in laboratories and on an industrial scale; improving their immobili...
Enzymes are versatile catalysts in laboratories and on an industrial scale; improving their immobili...
In this paper we report a facile method for preparing co-immobilized enzyme and magnetic nanoparticl...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
Enzyme immobilization on magnetic supports represents a great advantage for the industrial applicati...
WOS: 000252915700007Amino groups containing magnetic beads were used in covalent immobilization of t...
Objective(s): Enzyme immobilization via nanoparticles is perfectly compatible against the other chem...
Fe3O4 nanoparticles were prepared by a co-precipitation method with the assistance of ultrasound irr...
The biocatalyst horseradish peroxidase (HRP) was successfully immobilized onto magnetic nanoparticle...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
Novel hybrid magnetic cross-linked enzyme aggregates of phenylalanine ammonia lyase (HM-PAL-CLEAs) w...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
[[abstract]]Recombinant Chlamydomonas reinhardtii chlorophyllase 1 (CrCLH1) that could catalyze chlo...
Recombinant Brassica oleracea chlorophyllase 1 (BoCLH1) with a protein molecular weight of 38.63 kDa...
Enzymes have a wide variety of applications in diverse biotechnological fields, and the immobilizati...
Enzymes are versatile catalysts in laboratories and on an industrial scale; improving their immobili...
Enzymes are versatile catalysts in laboratories and on an industrial scale; improving their immobili...
In this paper we report a facile method for preparing co-immobilized enzyme and magnetic nanoparticl...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
Enzyme immobilization on magnetic supports represents a great advantage for the industrial applicati...
WOS: 000252915700007Amino groups containing magnetic beads were used in covalent immobilization of t...
Objective(s): Enzyme immobilization via nanoparticles is perfectly compatible against the other chem...
Fe3O4 nanoparticles were prepared by a co-precipitation method with the assistance of ultrasound irr...
The biocatalyst horseradish peroxidase (HRP) was successfully immobilized onto magnetic nanoparticle...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
Novel hybrid magnetic cross-linked enzyme aggregates of phenylalanine ammonia lyase (HM-PAL-CLEAs) w...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...