National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Wound dressing nanofibers mats fabricated from nanocomposite material
Čileková, Marta ; Pavliňák,, David (referee) ; Abdellatif, Abdelmohsan (advisor)
Boli pripravené kryty rán na bázi prírodných látok polyvinyl alcohol/ hyaluronan/ strieborné nanočastice (PVA/ HA/ Ag-NPs). Hyaluronan bol použitý ako redukčné a stabilizačné činidlo pre syntézu nanočastíc striebra. Pri príprave Ag-NPs boli testované viaceré parametre ako koncentrácia dusičnanu strieborného ako zdroja Ag-NPs (0,01; 0,1;0,5;1 M), koncentrácia kyseliny hyalurónovej (1,2 %) a jej rozdielna molekulová hmotnosť. Kryty rán z nanovlákien boli pripravené pomocou techniky electro-spinning z roztokov líšiacich sa pomerom PVA a HA/Ag-NPs (100; 90/10; 80/20; 60/40; 50/50). Vlastnosti nanokompozitu HA/Ag-NPs boli hodnotené pomocou TEM, reológie, DLS, XRD, UV/Vis spektroskopie a kryty rán boli charakterizované pomocou SEM, TGA, FTIR a ťahovej skúšky.
Analysis of glutenin fraction in winter wheat cultivated in ambient and elevated carbon dioxide concentrations
Čileková, Marta ; Vránová, Dana (referee) ; Hrstka, Miroslav (advisor)
Increasing carbon dioxide concentrations in the atmosphere has influence on plant’s photosynthesis and its metabolits. This bachelor thesis is focused on analysis of glutenin fraction in winter wheat (Triticum aestivum) var. Bohemia grown in ambient (AC) and elevated (EC; 700 mol.mol-1) carbon dioxide concentrations. Plants were cultivated in conditions with nitrogen fertilization (N+; 200 kg.ha-1) and without fertilization (N), in presence of UV-B radiation (UV+) and absence of UV-B radiation (UV), at drought (DRY) and with ambient irrigation (WET). Grain was harvested at 2014. The glutenin proteins were extracted from flour by isopropanol and DTT then separated by SDSPAGE and quantified by computer densitometry. Elevated carbon dioxide concentration decreased glutenin concentration in variant UV+ otherwise differences between AC and EC variants were nonsignificant. The nitrogen fertilization markedly increased glutenin content. Higher concentrations of glutenins were found in variants UV– WET and UV+ DRY. The highest concentrations of glutenins were found in conditions with presence of UV radiation, drought and nitrogen fertilization.
Wound dressing nanofibers mats fabricated from nanocomposite material
Čileková, Marta ; Pavliňák,, David (referee) ; Abdellatif, Abdelmohsan (advisor)
Boli pripravené kryty rán na bázi prírodných látok polyvinyl alcohol/ hyaluronan/ strieborné nanočastice (PVA/ HA/ Ag-NPs). Hyaluronan bol použitý ako redukčné a stabilizačné činidlo pre syntézu nanočastíc striebra. Pri príprave Ag-NPs boli testované viaceré parametre ako koncentrácia dusičnanu strieborného ako zdroja Ag-NPs (0,01; 0,1;0,5;1 M), koncentrácia kyseliny hyalurónovej (1,2 %) a jej rozdielna molekulová hmotnosť. Kryty rán z nanovlákien boli pripravené pomocou techniky electro-spinning z roztokov líšiacich sa pomerom PVA a HA/Ag-NPs (100; 90/10; 80/20; 60/40; 50/50). Vlastnosti nanokompozitu HA/Ag-NPs boli hodnotené pomocou TEM, reológie, DLS, XRD, UV/Vis spektroskopie a kryty rán boli charakterizované pomocou SEM, TGA, FTIR a ťahovej skúšky.
Analysis of glutenin fraction in winter wheat cultivated in ambient and elevated carbon dioxide concentrations
Čileková, Marta ; Vránová, Dana (referee) ; Hrstka, Miroslav (advisor)
Increasing carbon dioxide concentrations in the atmosphere has influence on plant’s photosynthesis and its metabolits. This bachelor thesis is focused on analysis of glutenin fraction in winter wheat (Triticum aestivum) var. Bohemia grown in ambient (AC) and elevated (EC; 700 mol.mol-1) carbon dioxide concentrations. Plants were cultivated in conditions with nitrogen fertilization (N+; 200 kg.ha-1) and without fertilization (N), in presence of UV-B radiation (UV+) and absence of UV-B radiation (UV), at drought (DRY) and with ambient irrigation (WET). Grain was harvested at 2014. The glutenin proteins were extracted from flour by isopropanol and DTT then separated by SDSPAGE and quantified by computer densitometry. Elevated carbon dioxide concentration decreased glutenin concentration in variant UV+ otherwise differences between AC and EC variants were nonsignificant. The nitrogen fertilization markedly increased glutenin content. Higher concentrations of glutenins were found in variants UV– WET and UV+ DRY. The highest concentrations of glutenins were found in conditions with presence of UV radiation, drought and nitrogen fertilization.

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