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A novel class of potential prion drugs: preliminary in vitro and in vivo data for multilayer coated gold nanoparticles

机译:小说类潜在朊病毒的药物:初步的体外和体内数据多层涂覆金纳米粒子

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摘要

Gold nanoparticles coated with oppositely charged polyelectrolytes, such as polyallylamine hydrochloride and polystyrenesulfonate, were examined for potential inhibition of prion protein aggregation and prion (PrP~(Sc)) conversion and replication, different coatings, finishing with a positive or negative layer, were tested, and different numbers of layers were investigated for their ability to interact and reduce the accumulation of PrP~(Sc) in scrapie prion infected ScGT1 and ScN2a cells. The particles efficiently hampered the accumulation of PrP~(Sc) in ScN2a cells and showed curing effects on ScGT1 cells with a nanoparticle concentration in the picomolar range. Finally, incpbation periods of prion-infected mice treated with nanomolar concentrations of gold nanoparticles were significantly longer compared to untreated controls.
机译:金纳米粒子涂层与电荷相反聚合电解质,如polyallylamine盐酸和polystyrenesulfonate检查潜在的朊病毒的抑制作用蛋白质聚合和朊病毒(PrP ~ (Sc))转换和复制,不同的涂料,完成与一个积极的还是消极的层,测试,和不同数量的层调查的能力和交互减少PrP的积累~ (Sc)的痒病朊病毒感染ScGT1和ScN2a细胞。颗粒有效地阻碍了积累ScN2a PrP ~ (Sc)的细胞和养护影响ScGT1纳米颗粒细胞浓度picomolar范围。朊病毒感染小鼠incpbation期治疗用摩尔浓度的黄金纳米粒子相比,大大延长未经处理的控制。

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