| Literature DB >> 27148527 |
Maja Čolnik1, Mateja Primožič1, Željko Knez1, Maja Leitgeb1.
Abstract
The influence of pressure and treatment time on cells disruption of different black yeasts and on activities of extracted proteins using supercritical carbon dioxide process was studied. The cells of three different black yeasts Phaeotheca triangularis, Trimatostroma salinum, and Wallemia ichthyophaga were exposed to supercritical carbon dioxide (SC CO2) by varying pressure at fixed temperature (35°C). The black yeasts cell walls were disrupted, and the content of the cells was spilled into the liquid medium. The impact of SC CO2 conditions on secretion of enzymes and proteins from black yeast cells suspension was studied. The residual activity of the enzymes cellulase, β-glucosidase, α-amylase, and protease was studied by enzymatic assay. The viability of black yeast cells was determined by measuring the optical density of the cell suspension at 600 nm. The total protein concentration in the suspension was determined on UV-Vis spectrophotometer at 595 nm. The release of intracellular and extracellular products from black yeast cells was achieved. Also, the observation by an environmental scanning electron microscopy shows major morphological changes with SC CO2-treated cells. The advantages of the proposed method are in a simple use, which is also possible for heat-sensitive materials on one hand and on the other hand integration of the extraction of enzymes and their use in biocatalytical reactions.Entities:
Keywords: P. triangularis; T. salinum; W. ichthyophaga; cell disruption; enzyme activity; supercritical carbon dioxide
Year: 2016 PMID: 27148527 PMCID: PMC4831980 DOI: 10.3389/fbioe.2016.00033
Source DB: PubMed Journal: Front Bioeng Biotechnol ISSN: 2296-4185
Figure 1High-pressure batch reactor: (1) CO.
Figure 2Viability of .
Figure 3ESEM images of black yeast cell suspension before and after incubation in SC CO. (A) P. triangularis cells before incubation in SC CO2, (B) P. triangularis cells after 24 h incubation in SC CO2 at 30 MPa and 35°C, (C) T. salinum cells before incubation in SC CO2, (D) T. salinum cells after 24 h incubation in SC CO2 at 30 MPa and 35°C, (E) W. ichthyophaga cells before incubation in SC CO2, and (F) W. ichthyophaga cells after 24 h incubation in SC CO2 at 30 MPa and 35°C.
Figure 4Residual total protein concentration in cell suspensions of .
Figure 5Residual activities of cellulases from .
Figure 6Residual activities of α-amylases from .
Figure 7Residual activities of β-glucosidases from .
Figure 8Residual activities of proteases from .