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Development of Biotechnology for Microbial Synthesis of Gold and Silver Nanoparticles
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作者 Tamaz Levan Kalabegishvili Ivane Giorgi Murusidze +12 位作者 Elena Ivan Kirkesali Alexander Nikoloz Rcheulishvil Eteri Nikoloz Ginturi Eteri Simon Gelagutashvili Nana Eremey Kuchava Nanuli Vakhtang Bagdavadze Dodo Trofim Pataraya Manana Amiran Gurielidze Hoi-Ying Holman Marina Vladimirovna Frontasyeva Inga Ivanovna Zinicovscaia Sergey Sergeevich Pavlov Vasiliy Timofeevich Gritsyna 《Journal of Life Sciences》 2013年第2期110-122,共13页
Several bacterial strains of Actinomycetes belonging to Streptomyces and Arthrobacter genera for the first time were used to study the biotechnology of synthesis of gold and silver nanoparticles. The experimental cond... Several bacterial strains of Actinomycetes belonging to Streptomyces and Arthrobacter genera for the first time were used to study the biotechnology of synthesis of gold and silver nanoparticles. The experimental conditions of gold and silver nanoparticles production by the cells of studied strains in aqueous chloroauric acid (HAuCIq) and in silver nitrate (AgNO3) solutions, respectively, were determined. Concentration and time-dependences of nanoparticle formation were investigated. The complex of optical and analytical methods was used for testing the gold and silver nanoparticles in the bacterial biomass. The TEM (Transmission Electron Microscopy) and XRD (X-ray Diffraction) data in all cases demonstrated the presence of crystals with fcc (face centered cubic) structure. The results obtained show that the Actinomycetes are capable of producing gold and silver nanoparticles of spherical shape extracellularly when exposed to suitable compounds. The particle size distribution shows that the sizes of nanoparticles are in the range of 5 nm to 80 nm. The biomass obtained may be used for industrial as well as medical and pharmaceutical purposes. 展开更多
关键词 Microbial synthesis NANOPARTICLES GOLD SILVER biotechnology.
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Synthesis of Gold Nanoparticles by Some Strains of Arthrobacter Genera 被引量:2
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作者 Tamaz Levan Kalabegishvi|i Elena Ivan Kirkesalt +14 位作者 Alexander Nikoloz Rcheulishvili Etery Nikoloz Ginturi Ivane Giorgi Murusidze Dodo Trofim Pataraya Manana Amiran Gurielidze Giorgi Ilia Tsertsvadze Vakhtang Nikoloz Gabunia Levan Giorgi Lomidze David Nugzar Gvarialadze Marina VladimirovnaFrontasyeva Sergey Sergeevich Pavlov Inga Ivanovna Zinicovscaia Marianne Janette Raven Ntsoaki Maditselana Francinah Seaga Arnaud Faanhof 《材料科学与工程(中英文A版)》 2012年第2期164-173,共10页
关键词 金纳米粒子 节杆菌属 合成 菌株 透射电子显微镜 扫描电子显微镜 细菌生物量 原子吸收光谱
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The Efficiency of Application Nanosilver in Technological Processes of Making Red Wine
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作者 Ebelashvili Nana Shubladze Liana +1 位作者 Salia Elene Gagelidze Nino 《Journal of Food Science and Engineering》 2013年第8期424-429,共6页
The efficiency of using nanostructured silver in technological processes of making red wine has been studied with the purpose of substituting sulfur dioxide. For preparation of research objects, we used dry wine mater... The efficiency of using nanostructured silver in technological processes of making red wine has been studied with the purpose of substituting sulfur dioxide. For preparation of research objects, we used dry wine material of red grape variety "Saperavi". After completion of malolactic fermentation, the second racking the wine material off the lees and its treatment with antiseptics were carried out. Sulfur dioxide (Kadifit) and different doses of nanostructured silver were used. Microbiological investigation was performed on the presence of lactic bacteria after completion of malolactic fermentation and racking off the lees. The investigation of phenolic compounds was conducted at the following stages of technological processes: (1) after completion of alcoholic fermentation and racking off the lees; (2) after completion of malolactic fermentation; (3) after the second racking off the lees and treatment with antiseptics. By means of the HPLC analysis, the amounts ofcatechins, phenolcarbonic acids and flavonols were determined. It has been established that after conduction of malolactic fermentation in the process of racking the wine material off the lees and storage, the application of 0.6 mg/L of nano-silver for blocking of lactic-acid bacteria and inhibition of oxidation of phenolic compounds has the same effect as sulfitization with 50 mg/L of Kadifit. 展开更多
关键词 NANO-SILVER red wine malolactic fermentation phenolic compounds sulfur dioxide
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