National Repository of Grey Literature 13 records found  previous11 - 13  jump to record: Search took 0.00 seconds. 
Study of the metabolism of 17α-ethinylestradiol by cytochromes P450
Valášková, Petra ; Černá, Věra (advisor) ; Levová, Kateřina (referee)
A synthetic estrogen 17α-ethinylestradiol (EE2) is the main active component of the hormonal contraceptive pills. The rise of consumption of hormonal contraceptives has increased the risk of the back negative effects of EE2 to aquatic organisms. EE2 belongs to the endocrine disruptive compounds known for mimicking natural hormones. A more detailed examination of the transformation of this compound in vivo and in vitro can contribute to a better understanding of its negative effects. This master thesis is therefore devoted to the study of the metabolism of EE2 in two selected model organisms. The ligninolytic fungus Pleurotus ostreatus is the type of fungi with promising biodegradation ability to a lot of pollutants. These properties have led to numerous studies of the degradation potential of P. ostreatus towards EE2, with the possibility of removing this compound from the environment. EE2 has been degraded by the fungus P. ostreatus in vivo resulting in one hydroxylated metabolite, which estrogenic activity is in need for further study. In vitro studies were carried out with a microsomal fraction isolated from the mycelium of this fungus. The conversion of EE2 in vitro via CYPs dependent on NADPH has not been demonstrated, however using KHP as a cofactor, there was one metabolite of EE2 found,...
Biodegradation of 17alfa-ethinylestradiol by enzymes of ligninolytic fungi
Přenosilová, Lenka ; Stiborová, Marie (advisor) ; Černá, Věra (referee)
This work is aimed at the study of the effect of 17α-ethinylestradiol (EE2) on the production and characteristics of ligninolytic enzymes (laccase, Mn-dependent peroxidase and lignin peroxidase) in I. lacteus, T. versicolor, P. chrysosporium and P. ostreatus cultures grown on two types of liquid media. Enzyme activity production in fungal cultures was affected by the composition of culture medium. In the case of P. chrysosporium, the addition of EE2 to the complex- medium cultures led to a MnP activity stimulation and simultaneously LiP production was partially repressed in these cultures. In the mineral MM medium, no effect of EE2 on enzyme production by P. chrysosporium was observed. In EE2 treated MM cultures of P. ostreatus lower MnP activities were found when compared to biotic controls. In the case of T. versicolor cultures, the addition of EE2 to the complex medium caused laccase and LiP stimulation in the cultures. In the MM medium, however, only laccase production was affected by EE2. I. lacteus MnP production was partially repressed by EE2 in MM medium. In contrast to that, significantly higher MnP activities were detected in complex- medium I. lacteus cultures after the treatment with EE2. Further EE2 degradation by the fungal cultures was studied. The highest degradation effeciency was...
Isolation and characterization of microsomal fraction of fungus Pleurotus ostreatus and its role in the degradation of 17α-ethinylestradiol
Valášková, Petra ; Černá, Věra (advisor) ; Hodek, Petr (referee)
A synthetic hormone 17α-ethinylestradiol (EE2) which is a component of hormonal contraception pills has been identified as a main component of the endocrine-disrupting compounds (EDc). EDc are substances that mimic natural hormones in their action. Recently their amount especially in the groundwater and the surface water has been increased, which results in a negative impact on the hormonal system especially of aquatic organisms. Since it is not easy to replace these substances from the environment by conventional techniques other possibilities of their biodegradation are examined. White rot fungi, which are able to degrade lignin in nature, have promising biodegradation abilities towards many pollutants. These fungi contain a wide range of non-specific extracellular and intracellular enzymes that play an important role in the degradation. This bachelor thesis was targeted on the study of a white rot fungus, Pleurotus ostreatus, and especially on the degradation potential of its intracellular enzymes in the biodegradation of EE2. Initially, the ability of fungi Pleurotus ostreatus to degrade EE2 in vivo was tested. During the 48 hour incubation there was replaced 95,5 % of EE2. However, the role of cytochromes P450 (CYPs) in a metabolism of EE2 was not confirmed in this experiment by reason that an...

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