PEC of the alginate-chitosan membrane as supporting material for immobilizing urease was produced. This study aimed to develop a supporting material for enzyme immobilization that has high stability, a fast response time and an easy and relatively inexpensive preparation procedure. An alginate-chitosan PEC membrane was produced by reacting alginate hydrosol and chitosan (1:1 in mass) at pH 5.28, followed by mixing and drying at room temperature. The FTIR spectra, XRD patterns and SEM assay confirmed that alginate-chitosan PEC was obtained. The color change of the BTB indicator proved that urease was trapped in the cavities of the alginate-chitosan PEC membrane while the immobilized urease still showed catalytic activity. Thus, the membrane ...
Hydrophilicity of membrane causing only water can pass through membrane. Pervaporation process using...
Enzyme immobilization onto support carriers has the potential to overcome some of the limitations of...
This work addresses the development and characterization of porous chitosan-alginate based polyelect...
PEC of the alginate-chitosan membrane as supporting material for immobilizing urease was produced. T...
The preparation of polyelectrolyte complex (PEC) as supporting material of urease immobilisation for...
Polyelectrolyte complexes (PECs) have been the focus of an expanding number of studies for their wid...
The Protease enzyme breaks down protein into amino acids as its constructors. Protease immobil...
Biopolymers are polymers fabricated from natural polymers which are biodegradable, non-toxic and ren...
Oral administration of encapsulated proteins for the treatment of metabolic enzyme disorders has rec...
Polyelectrolyte complex (PEC) films were prepared from chitosan (CHI) and alginate (ALG) which are p...
Thesis (Master)--İzmir Institute of Technology, Chemistry, İzmir, 2011Includes bibliographical refer...
Polyelectrolyte complexes (PECs) based on Alginate and Chitosan were prepared for biomedical applica...
The majority of cell encapsulation systems applied so far are based on polyelectrolyte complexes of ...
The alginate/chitosan microcapsule was prepared by emulsification/internal gelation method. It was f...
This work addresses the development and characterization of porous chitosan–alginate based polyelect...
Hydrophilicity of membrane causing only water can pass through membrane. Pervaporation process using...
Enzyme immobilization onto support carriers has the potential to overcome some of the limitations of...
This work addresses the development and characterization of porous chitosan-alginate based polyelect...
PEC of the alginate-chitosan membrane as supporting material for immobilizing urease was produced. T...
The preparation of polyelectrolyte complex (PEC) as supporting material of urease immobilisation for...
Polyelectrolyte complexes (PECs) have been the focus of an expanding number of studies for their wid...
The Protease enzyme breaks down protein into amino acids as its constructors. Protease immobil...
Biopolymers are polymers fabricated from natural polymers which are biodegradable, non-toxic and ren...
Oral administration of encapsulated proteins for the treatment of metabolic enzyme disorders has rec...
Polyelectrolyte complex (PEC) films were prepared from chitosan (CHI) and alginate (ALG) which are p...
Thesis (Master)--İzmir Institute of Technology, Chemistry, İzmir, 2011Includes bibliographical refer...
Polyelectrolyte complexes (PECs) based on Alginate and Chitosan were prepared for biomedical applica...
The majority of cell encapsulation systems applied so far are based on polyelectrolyte complexes of ...
The alginate/chitosan microcapsule was prepared by emulsification/internal gelation method. It was f...
This work addresses the development and characterization of porous chitosan–alginate based polyelect...
Hydrophilicity of membrane causing only water can pass through membrane. Pervaporation process using...
Enzyme immobilization onto support carriers has the potential to overcome some of the limitations of...
This work addresses the development and characterization of porous chitosan-alginate based polyelect...