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Comparative investigations of structure and absorptive capacity of nano- and microsized magnetic-operated particles for their application in medicine and biology

机译:纳米和微晶磁力颗粒结构和吸收能力对药物与生物学应用的比较研究

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For the first time, the comparative investigations of structure and sorption efficiency of nano- and microsized magnetic-operated particles in respect to both the antigen and virus hepatitis B and also to the substance-markers (low-, middle- and highmolecular substances) were carried out. The sorption efficiency of magnetic particles: magnetite (Fe_3O_4), cobalt-ferrite (CoFe_2O_4), composite ferro-carbon (FeC) to the substances of different molecular weight was evaluated in vitro experiments. The high absorptive capacity to low- and highmolecular substance-markers has been observed for microsized composites of FeC. Absorptive capacity of the nanosized Fe_3O_4 and CoFe_2O_4 particles to the substance-markers was low. But the nanosized Fe_3O_4 and CoFe_2O_4 particles had a good absorptive capacity to virus of hepatitis B and its antigen (HBsAg). The sorption efficiency results of nano- and microsized magnetic particles correlate with the structure of their surface.
机译:首次,关于抗原和病毒乙型肝炎和物质标记物(低,中和颗粒物质)的纳米和微型磁力颗粒的结构和吸附效率的比较调查执行。在体外实验中评估了磁性颗粒的吸附效率:磁铁矿(Fe_3O_4),钴 - 铁素体(COFE_2O_4),复合铁碳(FEC)的不同分子量的物质。已经观察到FEC的微源复合材料的低吸收能力和高分子物质标记物。纳米氧化物Fe_3O_4和COFE_2O_4颗粒对物质标记物的吸收能力低。但是纳米化Fe_3O_4和COFE_2O_4颗粒对乙型肝炎和抗原(HBsAg)的病毒具有良好的吸收能力。纳米和微晶磁性颗粒的吸附效率结果与它们的表面的结构相关。

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