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Study of Protein Coatings Cross-Linked via the Free-Radical Mechanism on Magnetic Nanoparticles by the Method of Spectral and Fluorescent Probes

机译:光谱和荧光探针法研究磁性纳米粒子通过自由基机理交联的蛋白质涂层

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摘要

Magnetite nanoparticles have been obtained with stable coatings formed from bovine and human serum albumins. The coatings are fixed by free-radical cross-linking of the proteins with the use of their ability to form interchain covalent bonds under the action of free radicals, which are generated with participation of transition metals present on nanoparticle surface. The method of spectral and fluorescent probes has been employed for the first time to describe the properties of coatings with the use of various dyes. It has been shown that, when studying the adsorption and free-radical cross-linking of proteins on nanoparticles, it is reasonable to use polymethine and squarylium dyes for estimating the functional properties of the proteins forming the coatings. It has been found that as many as 50% of molecules forming an albumin coating crosslinked via the free-radical mechanism retain their capability of bonding to a fluorescent dye. It has been concluded that the proteins occurring in the structure of the coatings retain their functional properties.
机译:已获得具有由牛和人血清白蛋白形成的稳定涂层的磁铁矿纳米颗粒。利用它们在自由基作用下形成链间共价键的能力,通过蛋白质的自由基交联来固定涂层,自由基是通过存在于纳米粒子表面的过渡金属的参与而产生的。光谱探针和荧光探针的方法首次被用于描述使用各种染料的涂层的性能。已经表明,当研究蛋白质在纳米颗粒上的吸附和自由基交联时,使用聚次甲基和方酸染料来估计形成涂层的蛋白质的功能特性是合理的。已经发现,多达50%的形成通过自由基机理交联的白蛋白涂层的分子保持了它们与荧光染料结合的能力。已经得出结论,存在于涂层结构中的蛋白质保留了它们的功能特性。

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