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首页> 外文期刊>ChemPlusChem >In Vivo Processing of Ceria Nanoparticles inside Liver: Impact on Free-Radical Scavenging Activity and Oxidative Stress
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In Vivo Processing of Ceria Nanoparticles inside Liver: Impact on Free-Radical Scavenging Activity and Oxidative Stress

机译:在肝脏内的Ceria纳米粒子的体内加工:对自由基清除活性和氧化应激的影响

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摘要

The cytotoxicity of ceria ultimately lies in its electronic structure, which is defined by the crystal structure, composition, and size. Despite previous studies focused on ceria uptake, distribution, biopersistance, and cellular effects, little is known about its chemical and structural stability and solubility once sequestered inside the liver. Mechanisms will be presented that elucidate the in vivo transformation in the liver. In vivo processed ceria reveals a particle-size effect towards the formation of ultrafines, which represent a second generation of ceria. A measurable change in the valence reduction of the second-generation ceria can be linked to an increased free-radical scavenging potential. The in vivo processing of the ceria nanoparticles in the liver occurs in temporal relation to the brain cellular and protein clearance responses that stem from the ceria uptake. This information is critical to establish a possible link between cellular processes and the observed in vivo transformation of ceria. The temporal linkage between the reversal of the pro-oxidant effect (brain) and ceria transformation (liver) suggests a cause-effect relationship.
机译:Ceria的细胞毒性最终位于其电子结构中,其由晶体结构,组成和尺寸定义。尽管先前的研究重点是有铈吸收,分布,生物渗透性和细胞效应,但对于其化学和结构稳定性而言,甚至令人满意的是,一旦在肝脏内隔离一次。将提出阐明肝脏体内转化的机制。在体内加工后的Ceria揭示了致粒度的效应,朝向形成超细,这代表了第二代Ceria。第二代分号的价值减少的可测量变化可以与增加的自由基清除潜力相关联。肝脏中的Ceria纳米粒子的体内加工发生在时间关系中,与茎从二氧化铈摄取的脑细胞和蛋白质清除响应进行。该信息至关重要,以建立细胞过程与在体内转换的细胞过程和观察到的Ceria之间的可能链接。促氧化效应(脑)和二氧化铈转化(肝脏)之间的逆转之间的时间联动表明了造成效应关系。

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