calb enzyme (Novozymes limited)
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Calb Enzyme, supplied by Novozymes limited, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/calb+enzyme/calb+enzyme/pm39255945-42-1-5
Average 90 stars, based on 1 article reviews
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Comparison:Article Title: Nature of support system and enzyme as key factors in immobilized biocatalyzed processes Article Snippet: For example, the combination of xerogel immobilized-TESADH and Article Title: The effects of the chemical modification on immobilized lipase features are affected by the enzyme crowding in the support. Article Snippet: Liquid formulations of Article Title: High terephthalic acid purity: Effective polyethylene terephthalate degradation process based on pH regulation with dual-function hydrolase. Article Snippet: • Effective PET hydrolysis process was developed to achieve high-purity TPA recovery.. • Dual-function IsPETasePA with balanced PET and MHET degradation efficiency.. • The pH-induced protonation of catalytic triad H208 inhibits MHET hydrolysis. Article Title: Development of an amine transaminase-lipase cascade for chiral amide synthesis under flow conditions Article Snippet: The immobilisation yield obtained for CALB was 67%, which corresponds to 7.5 w/w% protein loading, and the conversion towards the O-acetylated 1-phenylethan-1-ol was 15% after 0.5 h. Under the same conditions, Article Title: In Situ Enzymatic Polymerization of Ethylene Brassylate Mediated by Artificial Plant Cell Walls in Reactive Extrusion Article Snippet: In comparison, Müller et al. carried out enzymatic polymerization of ethylene brassylate in bulk using commercially available CALB as a catalyst immobilized on a Article Title: Hyperactivation of lipases by immobilization on superhydrophobic graphene quantum dots inorganic hybrid nanoflower. Article Snippet: Various nanoflowers are synthesized for enzyme immobilization.. In order to increase the activity of nanoflowers, in this study, 3D flower-like structured organic–inorganic hybrid nanoflowers (hNFs) with various lipases Rhizomucor miehei lipase (RML), Candida antarctica lipase B (CALB), Humicola insolens lipase (HIL), Thermomyces lanuginosus lipase (TLL), Eversa® Transform 2.0 (ET) a genetically modified enzyme derived of TLL and graphene quantum dots (GQDs) were prepared and characterized.Lipase hNFs [lipase-(Cu/Co)3(PO4)2] and lipase@GQDs hNFs [lipase@GQDs-(Cu/Co)3(PO4)2] were straightforwardly prepared through mixing with metal ion (Cu2+or Co2+) aqueous solutions with or without GQDs.. The ET@GQDs-(Cu)3(PO4)2 hNFs demonstrated 687 % higher activity than ET-(Cu)3(PO4)2 hNFs and 650 % higher activity than the free ET. Article Title: Design of 2,5-furandicarboxylic based polyesters degraded in different environmental conditions: Comprehensive experimental and theoretical study. Article Snippet: Nowadays, the promotion and application of aliphatic-aromatic copolyesters, such as poly (butylene adipate–co–terephthalate) (PBAT), are growing into a general trend.. Although the structures of diacids exerted substantial impacts on degradation behavior, the underlying mechanisms have rarely been studied.. In this work, 2,5Furandicarboxylic acid was combined with succinic acid (PBSF), adipic acid (PBAF) and diglycolic acid (PBDF) to prepare three kinds of copolyesters. Polymer:Article Title: Nature of support system and enzyme as key factors in immobilized biocatalyzed processes Article Snippet: For example, the combination of xerogel immobilized-TESADH and Article Title: The effects of the chemical modification on immobilized lipase features are affected by the enzyme crowding in the support. Article Snippet: Liquid formulations of Article Title: High terephthalic acid purity: Effective polyethylene terephthalate degradation process based on pH regulation with dual-function hydrolase. Article Snippet: • Effective PET hydrolysis process was developed to achieve high-purity TPA recovery.. • Dual-function IsPETasePA with balanced PET and MHET degradation efficiency.. • The pH-induced protonation of catalytic triad H208 inhibits MHET hydrolysis. Article Title: Development of an amine transaminase-lipase cascade for chiral amide synthesis under flow conditions Article Snippet: The immobilisation yield obtained for CALB was 67%, which corresponds to 7.5 w/w% protein loading, and the conversion towards the O-acetylated 1-phenylethan-1-ol was 15% after 0.5 h. Under the same conditions, Article Title: In Situ Enzymatic Polymerization of Ethylene Brassylate Mediated by Artificial Plant Cell Walls in Reactive Extrusion Article Snippet: In comparison, Müller et al. carried out enzymatic polymerization of ethylene brassylate in bulk using commercially available CALB as a catalyst immobilized on a Article Title: Hyperactivation of lipases by immobilization on superhydrophobic graphene quantum dots inorganic hybrid nanoflower. Article Snippet: Various nanoflowers are synthesized for enzyme immobilization.. In order to increase the activity of nanoflowers, in this study, 3D flower-like structured organic–inorganic hybrid nanoflowers (hNFs) with various lipases Rhizomucor miehei lipase (RML), Candida antarctica lipase B (CALB), Humicola insolens lipase (HIL), Thermomyces lanuginosus lipase (TLL), Eversa® Transform 2.0 (ET) a genetically modified enzyme derived of TLL and graphene quantum dots (GQDs) were prepared and characterized.Lipase hNFs [lipase-(Cu/Co)3(PO4)2] and lipase@GQDs hNFs [lipase@GQDs-(Cu/Co)3(PO4)2] were straightforwardly prepared through mixing with metal ion (Cu2+or Co2+) aqueous solutions with or without GQDs.. The ET@GQDs-(Cu)3(PO4)2 hNFs demonstrated 687 % higher activity than ET-(Cu)3(PO4)2 hNFs and 650 % higher activity than the free ET. Article Title: Design of 2,5-furandicarboxylic based polyesters degraded in different environmental conditions: Comprehensive experimental and theoretical study. Article Snippet: Nowadays, the promotion and application of aliphatic-aromatic copolyesters, such as poly (butylene adipate–co–terephthalate) (PBAT), are growing into a general trend.. Although the structures of diacids exerted substantial impacts on degradation behavior, the underlying mechanisms have rarely been studied.. In this work, 2,5Furandicarboxylic acid was combined with succinic acid (PBSF), adipic acid (PBAF) and diglycolic acid (PBDF) to prepare three kinds of copolyesters. Activity Assay:Article Title: Nature of support system and enzyme as key factors in immobilized biocatalyzed processes Article Snippet: For example, the combination of xerogel immobilized-TESADH and Article Title: The effects of the chemical modification on immobilized lipase features are affected by the enzyme crowding in the support. Article Snippet: Liquid formulations of Article Title: High terephthalic acid purity: Effective polyethylene terephthalate degradation process based on pH regulation with dual-function hydrolase. Article Snippet: • Effective PET hydrolysis process was developed to achieve high-purity TPA recovery.. • Dual-function IsPETasePA with balanced PET and MHET degradation efficiency.. • The pH-induced protonation of catalytic triad H208 inhibits MHET hydrolysis. Article Title: Development of an amine transaminase-lipase cascade for chiral amide synthesis under flow conditions Article Snippet: The immobilisation yield obtained for CALB was 67%, which corresponds to 7.5 w/w% protein loading, and the conversion towards the O-acetylated 1-phenylethan-1-ol was 15% after 0.5 h. Under the same conditions, Article Title: In Situ Enzymatic Polymerization of Ethylene Brassylate Mediated by Artificial Plant Cell Walls in Reactive Extrusion Article Snippet: In comparison, Müller et al. carried out enzymatic polymerization of ethylene brassylate in bulk using commercially available CALB as a catalyst immobilized on a Article Title: Hyperactivation of lipases by immobilization on superhydrophobic graphene quantum dots inorganic hybrid nanoflower. Article Snippet: Various nanoflowers are synthesized for enzyme immobilization.. In order to increase the activity of nanoflowers, in this study, 3D flower-like structured organic–inorganic hybrid nanoflowers (hNFs) with various lipases Rhizomucor miehei lipase (RML), Candida antarctica lipase B (CALB), Humicola insolens lipase (HIL), Thermomyces lanuginosus lipase (TLL), Eversa® Transform 2.0 (ET) a genetically modified enzyme derived of TLL and graphene quantum dots (GQDs) were prepared and characterized.Lipase hNFs [lipase-(Cu/Co)3(PO4)2] and lipase@GQDs hNFs [lipase@GQDs-(Cu/Co)3(PO4)2] were straightforwardly prepared through mixing with metal ion (Cu2+or Co2+) aqueous solutions with or without GQDs.. The ET@GQDs-(Cu)3(PO4)2 hNFs demonstrated 687 % higher activity than ET-(Cu)3(PO4)2 hNFs and 650 % higher activity than the free ET. Article Title: Design of 2,5-furandicarboxylic based polyesters degraded in different environmental conditions: Comprehensive experimental and theoretical study. Article Snippet: Nowadays, the promotion and application of aliphatic-aromatic copolyesters, such as poly (butylene adipate–co–terephthalate) (PBAT), are growing into a general trend.. Although the structures of diacids exerted substantial impacts on degradation behavior, the underlying mechanisms have rarely been studied.. In this work, 2,5Furandicarboxylic acid was combined with succinic acid (PBSF), adipic acid (PBAF) and diglycolic acid (PBDF) to prepare three kinds of copolyesters. Spectrophotometric Assay:Article Title: Nature of support system and enzyme as key factors in immobilized biocatalyzed processes Article Snippet: For example, the combination of xerogel immobilized-TESADH and Article Title: The effects of the chemical modification on immobilized lipase features are affected by the enzyme crowding in the support. Article Snippet: Liquid formulations of Article Title: High terephthalic acid purity: Effective polyethylene terephthalate degradation process based on pH regulation with dual-function hydrolase. Article Snippet: • Effective PET hydrolysis process was developed to achieve high-purity TPA recovery.. • Dual-function IsPETasePA with balanced PET and MHET degradation efficiency.. • The pH-induced protonation of catalytic triad H208 inhibits MHET hydrolysis. Article Title: Development of an amine transaminase-lipase cascade for chiral amide synthesis under flow conditions Article Snippet: The immobilisation yield obtained for CALB was 67%, which corresponds to 7.5 w/w% protein loading, and the conversion towards the O-acetylated 1-phenylethan-1-ol was 15% after 0.5 h. Under the same conditions, Article Title: In Situ Enzymatic Polymerization of Ethylene Brassylate Mediated by Artificial Plant Cell Walls in Reactive Extrusion Article Snippet: In comparison, Müller et al. carried out enzymatic polymerization of ethylene brassylate in bulk using commercially available CALB as a catalyst immobilized on a Article Title: Hyperactivation of lipases by immobilization on superhydrophobic graphene quantum dots inorganic hybrid nanoflower. Article Snippet: Various nanoflowers are synthesized for enzyme immobilization.. In order to increase the activity of nanoflowers, in this study, 3D flower-like structured organic–inorganic hybrid nanoflowers (hNFs) with various lipases Rhizomucor miehei lipase (RML), Candida antarctica lipase B (CALB), Humicola insolens lipase (HIL), Thermomyces lanuginosus lipase (TLL), Eversa® Transform 2.0 (ET) a genetically modified enzyme derived of TLL and graphene quantum dots (GQDs) were prepared and characterized.Lipase hNFs [lipase-(Cu/Co)3(PO4)2] and lipase@GQDs hNFs [lipase@GQDs-(Cu/Co)3(PO4)2] were straightforwardly prepared through mixing with metal ion (Cu2+or Co2+) aqueous solutions with or without GQDs.. The ET@GQDs-(Cu)3(PO4)2 hNFs demonstrated 687 % higher activity than ET-(Cu)3(PO4)2 hNFs and 650 % higher activity than the free ET. Article Title: Design of 2,5-furandicarboxylic based polyesters degraded in different environmental conditions: Comprehensive experimental and theoretical study. Article Snippet: Nowadays, the promotion and application of aliphatic-aromatic copolyesters, such as poly (butylene adipate–co–terephthalate) (PBAT), are growing into a general trend.. Although the structures of diacids exerted substantial impacts on degradation behavior, the underlying mechanisms have rarely been studied.. In this work, 2,5Furandicarboxylic acid was combined with succinic acid (PBSF), adipic acid (PBAF) and diglycolic acid (PBDF) to prepare three kinds of copolyesters. Titration:Article Title: Nature of support system and enzyme as key factors in immobilized biocatalyzed processes Article Snippet: For example, the combination of xerogel immobilized-TESADH and Article Title: The effects of the chemical modification on immobilized lipase features are affected by the enzyme crowding in the support. Article Snippet: Liquid formulations of Article Title: High terephthalic acid purity: Effective polyethylene terephthalate degradation process based on pH regulation with dual-function hydrolase. Article Snippet: • Effective PET hydrolysis process was developed to achieve high-purity TPA recovery.. • Dual-function IsPETasePA with balanced PET and MHET degradation efficiency.. • The pH-induced protonation of catalytic triad H208 inhibits MHET hydrolysis. Article Title: Development of an amine transaminase-lipase cascade for chiral amide synthesis under flow conditions Article Snippet: The immobilisation yield obtained for CALB was 67%, which corresponds to 7.5 w/w% protein loading, and the conversion towards the O-acetylated 1-phenylethan-1-ol was 15% after 0.5 h. Under the same conditions, Article Title: In Situ Enzymatic Polymerization of Ethylene Brassylate Mediated by Artificial Plant Cell Walls in Reactive Extrusion Article Snippet: In comparison, Müller et al. carried out enzymatic polymerization of ethylene brassylate in bulk using commercially available CALB as a catalyst immobilized on a Article Title: Hyperactivation of lipases by immobilization on superhydrophobic graphene quantum dots inorganic hybrid nanoflower. Article Snippet: Various nanoflowers are synthesized for enzyme immobilization.. In order to increase the activity of nanoflowers, in this study, 3D flower-like structured organic–inorganic hybrid nanoflowers (hNFs) with various lipases Rhizomucor miehei lipase (RML), Candida antarctica lipase B (CALB), Humicola insolens lipase (HIL), Thermomyces lanuginosus lipase (TLL), Eversa® Transform 2.0 (ET) a genetically modified enzyme derived of TLL and graphene quantum dots (GQDs) were prepared and characterized.Lipase hNFs [lipase-(Cu/Co)3(PO4)2] and lipase@GQDs hNFs [lipase@GQDs-(Cu/Co)3(PO4)2] were straightforwardly prepared through mixing with metal ion (Cu2+or Co2+) aqueous solutions with or without GQDs.. The ET@GQDs-(Cu)3(PO4)2 hNFs demonstrated 687 % higher activity than ET-(Cu)3(PO4)2 hNFs and 650 % higher activity than the free ET. Article Title: Design of 2,5-furandicarboxylic based polyesters degraded in different environmental conditions: Comprehensive experimental and theoretical study. Article Snippet: Nowadays, the promotion and application of aliphatic-aromatic copolyesters, such as poly (butylene adipate–co–terephthalate) (PBAT), are growing into a general trend.. Although the structures of diacids exerted substantial impacts on degradation behavior, the underlying mechanisms have rarely been studied.. In this work, 2,5Furandicarboxylic acid was combined with succinic acid (PBSF), adipic acid (PBAF) and diglycolic acid (PBDF) to prepare three kinds of copolyesters. |
