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@inproceedings{1332577, author = {Zeman, Tomáš and Dočekal, Bohumil and Mikuška, Pavel and Buchtová, marcela and Míšek, Ivan and Šerý, Omar and Večeřa, Zbyněk}, address = {Ostrava}, booktitle = {NANOCON 2014, 6TH INTERNATIONAL CONFERENCE}, keywords = {Inhaled nanoparticles; manganese oxides nanoparticles; changes in internal organ mass of mice; long-term inhalation experiment}, howpublished = {tištěná verze "print"}, language = {eng}, location = {Ostrava}, isbn = {978-80-87294-53-6}, note = {Žádný z autorů nemá afiliaci na MU, nelze tedy výsledek přenášet do RIV!}, pages = {686-691}, publisher = {TANGER Ltd}, title = {Influence of inhaled manganese oxides nanoparticles on mass of internal organs in mice}, url = {http://konsys-t.tanger.cz/files/proceedings/20/reports/3192.pdf}, year = {2015} }
TY - JOUR ID - 1332577 AU - Zeman, Tomáš - Dočekal, Bohumil - Mikuška, Pavel - Buchtová, marcela - Míšek, Ivan - Šerý, Omar - Večeřa, Zbyněk PY - 2015 TI - Influence of inhaled manganese oxides nanoparticles on mass of internal organs in mice PB - TANGER Ltd CY - Ostrava SN - 9788087294536 N1 - Žádný z autorů nemá afiliaci na MU, nelze tedy výsledek přenášet do RIV! KW - Inhaled nanoparticles KW - manganese oxides nanoparticles KW - changes in internal organ mass of mice KW - long-term inhalation experiment UR - http://konsys-t.tanger.cz/files/proceedings/20/reports/3192.pdf N2 - Results of the statistical analysis of a long-term inhalation experiment on laboratory mice are presented. During 17 weeks of the experiment, the experimental group was exposed to inhaled manganese oxides nanoparticles. Manganese oxides (MnO center dot Mn2O3) nanoparticles (MnONPs) were synthesized continuously via aerosol route in a hot wall tube flow reactor using a thermal decomposition of metal organic precursor manganese(II) acetylacetonate in the flow tube reactor (in vertical position) at temperature 750 degrees C in the presence of 30 vol% of oxygen. The concentration of produced MnONPs at the reactor output was in the range 1-3 x 10(7) particles/cm(3) and the size of generated nanoparticles MnO center dot Mn2O3 was in the range 7-50 nm. Before entering the inhalation chamber, MnONPs in the mixture of N-2, O-2 and air (at total flow rate of 3 L/min) were further diluted using filtrated humidified air (20 L/min) at temperature 21 degrees C resulting in the MnONPs concentration 2 x 10(6) particles/cm(3). At regular time intervals the mass of selected internal organs of mice from both experimental and control group was assessed. It has been proven that inhaled nanoparticles are able to influence the mass of internal organs of mice. Statistically significantly lower mass of kidneys, liver and spleen and higher mass of pancreas have been found in the experimental group compared to the control group. ER -
ZEMAN, Tomáš, Bohumil DOČEKAL, Pavel MIKUŠKA, marcela BUCHTOVÁ, Ivan MÍŠEK, Omar ŠERÝ a Zbyněk VEČEŘA. Influence of inhaled manganese oxides nanoparticles on mass of internal organs in mice. In \textit{NANOCON 2014, 6TH INTERNATIONAL CONFERENCE}. Ostrava: TANGER Ltd, 2015, s.~686-691. ISBN~978-80-87294-53-6.
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