Assessment method of the effects of nano-oxides with use of yeast
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BESHLIU, Alina, USATYI, Agafia, CHISELITSA, Natalia, RUSU, Emil, GUTSUL, Tatiana. Assessment method of the effects of nano-oxides with use of yeast. In: Cercetări şi inovaţii în viziunea tinerilor cercetători: “Cadet INOVA’20”, 26-28 martie 2020, Sibiu. Sibiu, România: Editura Academiei Forţelor Terestre „Nicolae Bălcescu”, 2020, Nr.5, pp. 183-184. ISSN ISSN 2501-3157 ISSN-L 2501-3157.
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Cercetări şi inovaţii în viziunea tinerilor cercetători
Nr.5, 2020
Conferința "Cercetări şi inovaţii în viziunea tinerilor cercetători"
Sibiu, Romania, 26-28 martie 2020

Assessment method of the effects of nano-oxides with use of yeast


Pag. 183-184

Beshliu Alina, Usatyi Agafia, Chiselitsa Natalia, Rusu Emil, Gutsul Tatiana
 
Institute of Microbiology and Biotechnology
 
Disponibil în IBN: 17 decembrie 2020


Rezumat

The invention relates to biochemistry, in particular to a method for assessing the toxicity of metal oxide nanparticles using yeasts. The method, according to the invention, provides sowing Rhodotorula gracilis CNMN-Y-30 yeast on a nutrient medium YPD, adding metal oxide nanoparticles at a concentration in the range of 0.5...15.0 mg/L, deep culturing for 72 hours, separating the biomass, determining in the biomass the catalase activity and β-carotene content, at the same time the toxicity level of metal oxide nanoparticles is established proceeding from concentrations that provoke a decrease in catalase activity or β-carotene content by 50 %.

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<dc:creator>Beşliu, A.V.</dc:creator>
<dc:creator>Usatîi, A.S.</dc:creator>
<dc:creator>Chiseliţa, N.N.</dc:creator>
<dc:creator>Rusu, E.V.</dc:creator>
<dc:creator>Guţul, T.D.</dc:creator>
<dc:date>2020</dc:date>
<dc:description xml:lang='en'><p>The invention relates to biochemistry, in particular to a method for assessing the toxicity of metal oxide nanparticles using yeasts. The method, according to the invention, provides sowing Rhodotorula gracilis CNMN-Y-30 yeast on a nutrient medium YPD, adding metal oxide nanoparticles at a concentration in the range of 0.5...15.0 mg/L, deep culturing for 72 hours, separating the biomass, determining in the biomass the catalase activity and &beta;-carotene content, at the same time the toxicity level of metal oxide nanoparticles is established proceeding from concentrations that provoke a decrease in catalase activity or &beta;-carotene content by 50 %.</p></dc:description>
<dc:source>Cercetări şi inovaţii în viziunea tinerilor cercetători (Nr.5) 183-184</dc:source>
<dc:title>Assessment method of the effects of nano-oxides with use of yeast</dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
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