Entrapment of yeast cells in a three-dimensional polymer matrix was achieved, and various properties of the polymer matrix as well as the invertase activity of the yeast cells were studied. When the matrix was highly cross-linked or synthesized from concentrated polymer solutions, its swelling ratio decreased. Invertase activity was found to increase with water content of the matrix. Cell content of the gel was found to affect adversely enzyme activity. The enzyme was found to retain its activity after seven runs with the same sample
A gel-entrapment method particularly suitable for viable cells is described. The gel matrix is gelat...
Microporous poly(2-hydroxyethyl methacrylate) (pHEMA) membrane was prepared by UV-initiated photopol...
Immobilization of 3 yeasts in a commercial, polyvinyl alcohol (PVA) gel bead system, and its effects...
A systematic investigation of the growth mode and appearance of two cell wall enzymes (invertase E.C...
Immobilization of yeast cells (Saccharomyces cerevisiae) in different polymer matrices was performed...
Yeast cell wall invertase (CWI) was immobilised within 10% gelatin hydrogel. The result of entrapmen...
An immobilization method based on the spontaneous adhesion of invertase-active cells of yeast (Sacch...
In a previous paper the immobilization of yeast (S. cerevisiae) by adhesion to tuff granules was des...
This paper presents an innovative technique of immobilizing Baker's yeast invertase using polyvinyl ...
Yeast cell wall invertase (CWI) was immobilized within calcium alginate beads. The result of entrapm...
Cell wall invertase (CWI) from Saccharomyces cerevisiae was immobilized in polyacrylamide hydrogels....
Three of the methods in which a gelatin matrix is used to entrap cells are compared. The advantages ...
A gel-entrapment method particularly suitable for viable cells is described. The gel matrix is gelat...
Microporous poly(2-hydroxyethyl methacrylate) (pHEMA) membrane was prepared by UV-initiated photopol...
Immobilization of 3 yeasts in a commercial, polyvinyl alcohol (PVA) gel bead system, and its effects...
A systematic investigation of the growth mode and appearance of two cell wall enzymes (invertase E.C...
Immobilization of yeast cells (Saccharomyces cerevisiae) in different polymer matrices was performed...
Yeast cell wall invertase (CWI) was immobilised within 10% gelatin hydrogel. The result of entrapmen...
An immobilization method based on the spontaneous adhesion of invertase-active cells of yeast (Sacch...
In a previous paper the immobilization of yeast (S. cerevisiae) by adhesion to tuff granules was des...
This paper presents an innovative technique of immobilizing Baker's yeast invertase using polyvinyl ...
Yeast cell wall invertase (CWI) was immobilized within calcium alginate beads. The result of entrapm...
Cell wall invertase (CWI) from Saccharomyces cerevisiae was immobilized in polyacrylamide hydrogels....
Three of the methods in which a gelatin matrix is used to entrap cells are compared. The advantages ...
A gel-entrapment method particularly suitable for viable cells is described. The gel matrix is gelat...
Microporous poly(2-hydroxyethyl methacrylate) (pHEMA) membrane was prepared by UV-initiated photopol...
Immobilization of 3 yeasts in a commercial, polyvinyl alcohol (PVA) gel bead system, and its effects...