National Repository of Grey Literature 2 records found  Search took 0.02 seconds. 
Interaction of human immune cells with ultrasmall nanoparticles
Javorová, Pavlína ; Hubálek Kalbáčová, Marie (advisor) ; Krulová, Magdaléna (referee)
The application of nanoparticles in the field of theranostics requires knowledge of the specific interaction of nanoparticles with the immune system. One of the first cells with which nanoparticles interact when given to the body are cells of the mononuclear phagocytic system. The aim of this diploma thesis is to prepare an in vitro study that describes the effect of two types of gold and three types of silicon ultra-small nanoparticles on immune cells. Immune cells are presented in the form of primary PBMCs isolated from whole blood , and cells of monocytic cell line THP-1 in the form of monocytes and differentiated macrophages. During the experiments with primary cells, emphasis is placed on maintaining the concept of personalized protein corona. After characterization of the immune cells used, cells are subsequently stimulated with ultra-small nanoparticles and the influence of these nanoparticles on cell metabolism, viability, degree of differentiation and secretion of pro- and antiinflammatory cytokines is monitored. The outcome takes into account further use of the tested nanoparticles in the field of biomedicine. Key words: primary monocytes, cell lines, differentiation, macrophages, cytokines, cytotoxicity
Biomolecular corona of Si and Au nanoparticles and its impact on interaction with cells
Javorová, Pavlína ; Hubálek Kalbáčová, Marie (advisor) ; Fišer, Radovan (referee)
Biological response to presence of gold and silica nanoparticles is extensively researched area of science. However there is only limited knowledge and understanding of the effects of small and ultrasmall nanoparticles. Regarding the unique physical and chemical properties that originate from the small size have these nanoparticles ability to interact very specifically on molecular level with organisms. Once the particle enters the complex physiological environment of the body molecules (predominantly of protein character) adsorb on the surface and form a polymeric case called biomolecular corona. There is a presumption that the first contact of the nanoparticle with the cell is mediated through the molecules of this corona and are important in subsequent steps of interactions of nanoparticle-biocorona complex. Therefore the genesis and structure of biocorona is as essential as the structre of the nanoparticle itself. Nanoparticles enter and are internalized within the cell and cellular compartments through the same mechanisms like naturally occurring molecules and substances. There are slightly different patterns of behavior of small and ultrasmall nanoparticles that are not fully researched and understood. Response of mamallian cells to the presence of the ultrasmall nanoparticles is very...

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