National Repository of Grey Literature 92 records found  previous11 - 20nextend  jump to record: Search took 0.01 seconds. 
Study on Interconnection between Structure and Rheological Properties of Hydrogels on Macro and Microscopic Level
Lepíková, Jana ; Klučáková, Martina (referee) ; Kalina, Michal (advisor)
Diploma thesis main goal is to obtain new pieces of knowledge about relationship between hydrogel structures and its flow and transport properties. Thesis is mainly focusing on combining pertinent biopolymers into model hydrogels based on agarose. Then perform correlation of results obtained by diffusion methods, and by rheologic measurements on macroscopic and microscopic level. Properties of hydrogels were measured by selected rheologic measurements, dynamic light scattering method, and correlative fluorescence spectroscopy. From these methods various parameters (MSD modules, values of complex viscosity) were obtained. Afterwards transport properties of prepared hydrogels were studied by observing Rhodamine 6G diffusion. Here two different approaches were used. From macroscopic perspective, simple principles of mass diffusion from dye solution to cuvettes filled with hydrogels containing individual biopolymers were used. From microscopic perspective, dye was added during the sample preparation and then the mass diffusion was investigated using FCS. Based on evaluated results it was discovered that added biopolymers don’t influence properties of carrier medium, in this case agarose hydrogels. During the study of prepared hydrogels’ reactivity and barrier properties some differences were observed. Charge of biopolymer and its charge density were discovered as main factors influencing transport of charged solutes into prepared hydrogels.
Crystallization of microbial polyesters - methods and biological consequences
Liczka, Jan ; Kalina, Michal (referee) ; Sedláček, Petr (advisor)
The aim of this bachelor thesis was to test suitable methods for preparation of amorphous form of microbial polyesters and to perform model experiment to study a kinetics of crystallization of prepared polyesters. The theoretical part deals with PHA characteristics and various methods of isolating PHB granules from bacterial cells. In the experimental part, measuring techniques such as analytical centrifugation, dynamic light scattering (DLS) and Fourier transform infrared spectroscopy (FTIR) were tested to characterize the properties of PHB granules. Furthermore, an experiment was performed to isolate native PHB granules from Cupriavidus necator using lysozyme, deoxyribonuclease and cell disruption by ultrasonification. The results of the analyzes showed that the granules were either isolated amorphous only in the wet and crystallized upon drying, or that the granules were completely amorphous but not isolated from the bacterial cell.
Utilization of thermal and structural analyses in study on the formation of polyelectrolyte complexes
Řiháčková, Barbora ; Sedláček, Petr (referee) ; Krouská, Jitka (advisor)
This bachelor thesis deals with a study of the polyelectrolyte complexes made by chitosan and humic acids. The work was motivated by the research in the field of new materials which can be potentially useful for agricultural and medical applications. A degree and a character of the interactions were studied by isothermal titration calorimetry and dynamic light scattering method. The calorimetric experiments proved that decreasing concentration of samples causes decreasing of reaction enthalpy. Moreover, the temperature changes during the titration are not influenced by water molecules as environment but mostly by the interactions between the functional groups of chitosan and humic acids. The formation of polyelectrolyte complexes was proved also by measurements of intensity of scattered light and Z-average of particle size.
Influence of the preparing of a biopolymer-surfactant complex on its stability and solubilization properties.
Pilgrová, Tereza ; Burgert,, Ladislav (referee) ; Mravec, Filip (advisor)
Influence of the preparing of a biopolymer-surfactant system on its solubilization properties and stability was investigated by using fluorescence spectroscopy and dynamic light scattering methods. Investigation was made on complex of native hyaluronan with cationic surfactant cetyltrimethylammonium bromide (CTAB). System has been studied in aqueous and in saline solutions. The effect of temperature of stock solutions and freezing effect on subsequent properties were investigated. Further was examinated, what effect has a way of introducing fluorescent probe into the system on subsequent solubilization properties. It was found that the conditions of preparing of biopolymer-surfactant system have a significant effect on the solubilization properies and stability of complex.
Utilization of biosurfactants for incorporation of hydrophobic domains into modern controlled-release systems
Nešpor, Tomáš ; Pekař, Miloslav (referee) ; Sedláček, Petr (advisor)
This work deals with the current topic of carrier systems. Since the biggest problem is the passage of hydrophobic drugs through the bloodstream, or through universal body barriers (eg blood-brain), it is necessary to chemically modify these carriers in order to be able to administer hydrophobic substances effectively. Based on a literature search, several systems are designed and subsequently studied, in which there is a presumption of possible use for carrier systems and at the same time they have biosurfactants incorporated in them due to their ability to solubilize hydrophobic molecules. The theoretical part of this work will describe the individual biosurfactants, the process of their production, their physicochemical properties, and the possibility of their use in carrier systems. At the same time, the individual carrier systems, the procedure of their preparation, the possibilities of their use are described, and their advantages and disadvantages are also compared. In the practical part, the screening of both individual substances and their mutual interactions, as well as methods used to study the emerging structures is then performed. The study of molecular interactions is primarily performed using the technique of dynamic light scattering. The next part describes the optimization of hydrogel formation with incorporated biosurfactants in their structure and then the formed gels are subjected to rheological and solubilization tests. The study of the internal structure of these gels is performed using a scanning electron microscope.
Catanionic vesicular systems
Repová, Romana ; Krouská, Jitka (referee) ; Mravec, Filip (advisor)
This bachelor thesis deals with catanionic vesicles. The aim of the study was to prepare and characterize these systems. The catanionic vesicles are composed of cationic (CTAB, CTAC, TTAB, DTAB) and anionic surfactants (SDS). The physical stability of the vesicles was enhanced with the addition of cationic surfactant DODAC.The catanionic vesicles were characterized by the measurement of the dynamic light scattering, zeta potencial and fluorescence correlation spectroscopy. The size and stability of the system were determined using dynamic light scattering. Difussion coefficient of the system was analyzed using fluorescence correlation spectroscopy.
Study of interaction in biopolymer-surfactant system
Sovová, Šárka ; Mondek, Jakub (referee) ; Pilgrová, Tereza (advisor)
Interaction between biopolymer-surfactant and stability of arising complexes were investigated using dynamic light scattering method Stability of the system and interactions between native hyaluronan and cationic surfactant cetyltromethyl-amonium bromide in aqueous solution depending on preparation method were investigated. System was prepared either adding CTAB to hyaluronan causing sequential micelle’s formation, or adding hyaluronan to already formed micelles. It was found out that preparing method influences properties of arisen complexes. Molecular weight of hyaluronan has an inconsiderable effect on interaction against to concentration of hyaluronan, which influences interaction of component significantly.
Agregation of palmitoyl-modified hyaluronan
Lehocká, Nikola ; Mravec, Filip (referee) ; Pekař, Miloslav (advisor)
This thesis deals with the aggregation behaviour of palmitoylhyaluronan in two degrees of substitution, namely 10 % and 16 %. Using a fluorescence spectroscopy method with pyrene as a fluorescence probe, we found a critical micellar concentration. The results were confirmed by measuring the dynamic light scattering, which also showed an increase in the size of aggre-gates with an increasing concentration. System stability is reduced by increased ionic strength as evidenced by zeta potential measurement. Experiments found that 16 % substitution sample can form a gel. The gel is very stiff and has excellent properties, which was confirmed by rhe-ology. We also managed to incorporate pyrene in the gel, which was demonstrated by the presence of highly solvated domains that could be polymer micelles. Based on these results, 16% substitution sample was subjected the MTT assay to cytotoxicity. The results confirmed that the examined sample was not toxic.
Molecular organization of humic acids in solutions
Chytilová, Aneta ; Enev, Vojtěch (referee) ; Klučáková, Martina (advisor)
The diverse structure and content of the highly varied functional groups of humic acids determine these substances as a worthwhile study material for a number of scientific institutions. Above all, the structure causes a wide range of their interesting properties, especially spectral, colloidal, electrochemical, ion-exchange and adsorption properties. Humic acids have variety of utilization in the industry while they have been the subject of a range of further research and development. The character of these complex heterogeneous polydisperse substances is mainly cyclic and aromatic, which according to some studies results in their brown color. Generally, there are multiple theories assuming their potential secondary structure. The aim of this study is the analysis of structure and conformation of humic acids in aqueous solutions. For the purposes mentioned above a concentration series of humic acids have been prepared in four different mediums: 0,1 M NaOH, humic acids in water with pH modified to 12 (basic medium), 0,1 M NaOH + 0,1 M HCl, 0,1 M NaCl (neutral medium). In order to study conformations several analytic methods have been used: ultraviolet and visible spectroscopy, dynamic light scattering, electrophoretic light scattering, potentiometric determination of pH and direct conductimetry. Throughout the experimentation the emphasis was mainly on the purity of humic acids extracted from lignite.
The Study of Aggregation of Humic Acids in Different Xenobiotic Environments
Hronová, Aneta ; Smilek, Jiří (referee) ; Kalina, Michal (advisor)
Theme of the presented bachelor thesis is the study of the aggregation behavior of the humic acids (HA) in the environment of extraneous substances. As extraneous substances, three cationic surfactants were selected (CTAB, TTAB and Septonex). In the experimental part of the thesis, the humic acids were characterized in detail using different methods (elemental analysis, ash content determination, titration acidity determination). The experimental part of the thesis is dealing with the structure of created HA-surfactant systems. These systems were characterized using the results of the elemental analysis and FT-IR spectroscopy. The key part of the experimental part of the study is represented by the selection of proper methods and by determination of the critical aggregation concentration of the humic acids in the surfactant environment. For these purposes, two key methods were selected in the frame of the presented bachelor thesis: isothermal titration calorimetry and dynamic light scattering. The first method is sensitive owing to the energetic fluctuations, in the case of the dynamic light scattering we are able to detect well the changes in the particle size caused by mutual interactions of particular substances in the system.

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