Cell microencapsulation is one of the promising biotechnological processes for immobilized cell culture. In this work, Escherichia coli and Saccharomyces cerevisiae cells were entrapped in alginate-chitosan-alginate (ACA) microcapsules. The behavior of microencapsulated and nonencapsulated free cells were studied and simulated by mathematical models. The Gompertz and Richards function were modified and compared to describe the growth and metabolism of microencapsulated and free microbial cells for a better understanding of the growth and its optimization. The results showed that both of the modified Gumpertz and Richards model could be used to describe the growth and metabolic process in ACA encapsulated culture as well as in free culture. ...
The scope of the work presented in this thesis has been the study of growth, cell release and metabo...
The oral administration of artificial cell microcapsules entrapping the live bacterial cells provide...
Cell encapsulation technology holds promise for the cell-based therapy. But poor mechanical strength...
Cell microencapsulation is one of the promising biotechnological processes for immobilized cell cult...
Alginate-chitosan (AC) microcapsule with polyelectrolyte complex (PEC) membrane has been attractive ...
Immobilization biocatalysis is a potential technology to improve the activity and stability of bioca...
Immobilization biocatalysis is a potential technology to improve the activity and stability of bioca...
Oral administration of artificial cell microcapsules entrapping live bacterial cells is a promising ...
In this study, we investigated the effect of the microenvironment provided by alginate-poly-L-lysine...
Microencapsulation of cells is gaining popular interest in the field of biomedical engineering becau...
Microencapsulation technology is an alternative large-scale mammalian cell culture method. The semi-...
Cell microencapsulation is likely to play a major role in cell and transplantation therapies in the ...
Cell microencapsulation is a promising approach for cell implantation, cell-based gene therapy, and ...
A novel chemical method to break and dissolve cell-loaded microcapsules under physiological conditio...
The rate of heat output is one of the suitable measurements of metabolic activity of the organism or...
The scope of the work presented in this thesis has been the study of growth, cell release and metabo...
The oral administration of artificial cell microcapsules entrapping the live bacterial cells provide...
Cell encapsulation technology holds promise for the cell-based therapy. But poor mechanical strength...
Cell microencapsulation is one of the promising biotechnological processes for immobilized cell cult...
Alginate-chitosan (AC) microcapsule with polyelectrolyte complex (PEC) membrane has been attractive ...
Immobilization biocatalysis is a potential technology to improve the activity and stability of bioca...
Immobilization biocatalysis is a potential technology to improve the activity and stability of bioca...
Oral administration of artificial cell microcapsules entrapping live bacterial cells is a promising ...
In this study, we investigated the effect of the microenvironment provided by alginate-poly-L-lysine...
Microencapsulation of cells is gaining popular interest in the field of biomedical engineering becau...
Microencapsulation technology is an alternative large-scale mammalian cell culture method. The semi-...
Cell microencapsulation is likely to play a major role in cell and transplantation therapies in the ...
Cell microencapsulation is a promising approach for cell implantation, cell-based gene therapy, and ...
A novel chemical method to break and dissolve cell-loaded microcapsules under physiological conditio...
The rate of heat output is one of the suitable measurements of metabolic activity of the organism or...
The scope of the work presented in this thesis has been the study of growth, cell release and metabo...
The oral administration of artificial cell microcapsules entrapping the live bacterial cells provide...
Cell encapsulation technology holds promise for the cell-based therapy. But poor mechanical strength...