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Specific biomoiecule corona is associated with ring-shaped organization of silver nanoparticles in cells

机译:具体biomoiecule电晕是相关联的环形组织的银纳米粒子在细胞中

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We correlate the localization of silver nanoparticles inside cells with respect to the cellular architecture with the molecular information in the vicinity of the particle surface by combining nanoscale 3D cryo-soft X-ray tomography (cryo-SXT) with surface-enhanced Raman scattering (SERS). The interaction of the silver nanoparticle surface with small molecules and biopolymers was monitored by SERS In vitro over time in living cells. The spectra indicate a stable, time-independent surface composition of silver nanoparticles, despite the changing environment in the endosomal structure. Cryo-SXT reveals a characteristic ring-shaped organization of the silver nanoparticles in endosomes of different cell types. The ring-like structures inside the endosomes suggest a strong association among silver particles and with membrane structures. The comparison of the data with those obtained with gold nanoparticles suggests that the interactions between the nanoparticles and with the endosomal component are influenced by the molecular composition of the corona.
机译:我们与银的本地化纳米粒子在细胞内的细胞与分子结构附近的粒子的信息表面纳米尺度相结合3 d cryo-soft x射线断层扫描与表面增强拉曼(cryo-SXT)散射(ser)。纳米颗粒表面与小分子生物聚合物被体外ser /监控时间在活细胞。稳定、长期有效的表面组成银纳米粒子,尽管改变环境endosomal结构。揭示了一个环形的组织特征银纳米粒子的核内体不同的细胞类型。在核内体建议一个强大的协会在银粒子和膜结构。与金纳米粒子显示获得的纳米粒子之间的相互作用与endosomal组件的影响日冕的分子组成。

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