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Ex situ evaluation of the composition of protein corona of intravenously injected superparamagnetic nanoparticles in rats

机译:非原位评价蛋白质的组成电晕的静脉注射超顺磁的纳米颗粒在老鼠身上

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摘要

It is now well recognized that the surfaces of nanoparticles (NPs) are coated with biomolecutes (e.g., proteins) in a biological medium. Although extensive reports have been published on the protein corona at the surface of NPs in vitro, there are very few on the in vivo protein corona. The main reason for having very poor information regarding the protein corona in vivo is that separation of NPs from the in vivo environment has not been possible by using available techniques. Knowledge of the in vivo protein corona could lead to better understanding and prediction of the fate of NPs in vivo. Here, by using the unique magnetic properties of superparamagnetic iron oxide NPs (SPiONs), NPs were extracted from rat sera after in vivo interaction with the rat's physiological system. More specifically, the in vivo protein coronas of polyvinyl-alcohol-coated SPIONs with various surface charges are defined. The compositions of the corona at the surface of various SPIONs and their effects on the biodistribution of SPIONs were examined and compared with the corona composition of particles incubated for the same time in rat serum.
机译:现在认识到的表面纳米颗粒(NPs)与biomolecutes涂层(如蛋白质)在生物介质。广泛的报告已经出版蛋白质表面的电晕NPs在体外,很少有在体内蛋白质电晕。有很差的主要原因的信息关于电晕体内的蛋白质NPs从体内环境的分离没有可能通过使用可用技术。电晕可能导致更好的理解预测NPs体内的命运。使用独特的磁性超顺磁性氧化铁NPs (SPiONs), NPs提取从老鼠体内后血清吗与鼠的生理系统的交互。更具体地说,体内蛋白质的电晕polyvinyl-alcohol-coated SPIONs各种定义了表面电荷。在各种SPIONs和表面电晕SPIONs biodistribution的的影响检查并与电晕吗成分相同的粒子孵化时间在大鼠血清。

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