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  • Czech Technical University in Prague
  • Faculty of Biomedical Engineering
  • Department of Biomedical Technology
  • Bachelor Theses - 17110
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Molekulární diagnostika pomocí nanočástic s použitím metod časově rozlišené fluorescenční mikroskopie

Molecular diagnostics of nanoparticles by time resolved fluorescent microscopy

Type of document
bakalářská práce
bachelor thesis
Author
Kaštánková Jana
Supervisor
Petráková Vladimíra
Opponent
Šiňor Milan
Field of study
Biomedicínský technik
Study program
Biomedicínská a klinická technika
Institutions assigning rank
katedra biomedicínské techniky
Defended
2016-06-28



Rights
A university thesis is a work protected by the Copyright Act. Extracts, copies and transcripts of the thesis are allowed for personal use only and at one?s own expense. The use of thesis should be in compliance with the Copyright Act http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf and the citation ethics http://knihovny.cvut.cz/vychova/vskp.html
Vysokoškolská závěrečná práce je dílo chráněné autorským zákonem. Je možné pořizovat z něj na své náklady a pro svoji osobní potřebu výpisy, opisy a rozmnoženiny. Jeho využití musí být v souladu s autorským zákonem http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf a citační etikou http://knihovny.cvut.cz/vychova/vskp.html
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Abstract
Casove rozlisena uorescencn mikroskopie je opticka metoda, ktera umoznuje zobrazen a analyzu molekularnch procesu v prirozenem biologickem prostred. Lze ji uplatnit naprklad pri detekci uorescencnch castic, stanoven vlastnost bezprostrednho okol uoroforu ci sledovan interakce nanocastic s jinymi latkami. V prvn casti teto bakal arske prace je uvedena teorie k problematice se zamerenm na princip uorescence, urcovan doby zivota a nanocastice (zejmena diamantove). Ve druhe casti jsou popsany rozdly mezi casove rozlisenou a nerozlisenou metodou, optimalizacn postupy prpravy vzorku nanodiamantovych castic a provedene experimenty. Vysledkem optimalizace jsou predevsm nalezen vhodne koncentrace roztoku nanodiamantu a jejich uprava pomoc kationickeho polymeru. Hlavnm vysledkem provedenych experimentu je vytvoren metody, kterou lze detekovat navazan polymeru na diamantove nanocastice. Tyto castice byly pote dopraveny do bunek.
 
Fluorescence lifetime imaging is an optical method which is used for imaging and analysis of molecular processes in biological environment. One of the possible uses is detection of uorescent particles, determination of properties in surrounding uorophore or observation of nanoparticles' interaction with other materials. In the rst part of this bachelor's work, there is described a theory regarding principles of uorescence and nanoparticles (especially nanodiamonds). There are also comparison of time resolved andstandard confocal methods, optimalizations of procedures of sample preparation and experiments in the second part. The results of optimalization procedures are mainly a suitable solution concentration and its adjustment with cationic polymer. The main result is a method, which allows to detect binding of polymer to nanoparticles. These nanoparticles were then transported into cells.
 
URI
http://hdl.handle.net/10467/75159
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