The rate of heat output is one of the suitable measurements of metabolic activity of the organism or its parts, down to the cellular or even the sub-cellular levels. In this paper, microcalorimetry was first applied to study the metabolic activity of microbial in both alginate-polylysine-alginate and alginate-chitosan-alginate microencapsulated cultures as well as in free non-encapsulated culture. The organisms used for the measurements were Escherichia coli and Saccharomyces cerevisiae. As a result of this work, it was found that, despite E. coli cell in free non-encapsulated culture has the highest metabolic rate due to the highest value of heat output, the proliferation of the cells terminates quickly with a lowest biomass formed. And we...
Bench-scale heat flux calorimetry is applied to monitor complex microbial systems producing secondar...
Bench-scale biocalorimetry (=1 L) allows for the determination of the metabolic heat flow during bio...
The method by which cells are grown, seeded, and analyzed for their heat generation from the microca...
Thermal events accompanying the growth of K. aerogenes in batch culture in C- and K+-limited salts m...
The heat produced by animal cells in culture can be used as the primary indicator of the kinetics of...
The heat output of steady-state cells of Klebsiella aerogenes growing in Carbon limited and Carbon-...
Calorimetric measurements of the change in heat due to microbial metabolic activity convey informati...
The potential of using microcalorimetry as a rapid method for the quantification of probiotic micro-...
Measuring metabolic activity and response of biofilm to different conditions or compounds is of gene...
A culture flask was designed for the microcalorimetric measurements of tissue cells by an MS 80 stan...
The exploitation of microorganisms in natural or technological systems calls for monitoring tools th...
A phenomenological approach, based on the simple consideration of the cell duplication mechanism, is...
Cell microencapsulation is one of the promising biotechnological processes for immobilized cell cult...
Isothermal microcalorimetry is becoming widely used for monitoring biological activities in vitro. M...
Klebsiella aerogenes has been grown in carbon-limited chemostats and the heat output of different st...
Bench-scale heat flux calorimetry is applied to monitor complex microbial systems producing secondar...
Bench-scale biocalorimetry (=1 L) allows for the determination of the metabolic heat flow during bio...
The method by which cells are grown, seeded, and analyzed for their heat generation from the microca...
Thermal events accompanying the growth of K. aerogenes in batch culture in C- and K+-limited salts m...
The heat produced by animal cells in culture can be used as the primary indicator of the kinetics of...
The heat output of steady-state cells of Klebsiella aerogenes growing in Carbon limited and Carbon-...
Calorimetric measurements of the change in heat due to microbial metabolic activity convey informati...
The potential of using microcalorimetry as a rapid method for the quantification of probiotic micro-...
Measuring metabolic activity and response of biofilm to different conditions or compounds is of gene...
A culture flask was designed for the microcalorimetric measurements of tissue cells by an MS 80 stan...
The exploitation of microorganisms in natural or technological systems calls for monitoring tools th...
A phenomenological approach, based on the simple consideration of the cell duplication mechanism, is...
Cell microencapsulation is one of the promising biotechnological processes for immobilized cell cult...
Isothermal microcalorimetry is becoming widely used for monitoring biological activities in vitro. M...
Klebsiella aerogenes has been grown in carbon-limited chemostats and the heat output of different st...
Bench-scale heat flux calorimetry is applied to monitor complex microbial systems producing secondar...
Bench-scale biocalorimetry (=1 L) allows for the determination of the metabolic heat flow during bio...
The method by which cells are grown, seeded, and analyzed for their heat generation from the microca...