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The release and detection of copper ions from ultrasmall theranostic Cu2-xSe nanoparticles

机译:铜离子的释放和检测超微theranostic Cu2-xSe纳米颗粒

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摘要

Nanoscale copper chalcogenides have been widely used in nanomedicine, however, their pharmacokinetics, degradation, and biological effects of released copper ions are usually overlooked, which are crucial for their future clinical translation. Herein, we report the in vitro and in vivo release of copper ions from polyvinylpyrrolidone (PVP) functionalized ultrasmall copper selenide (Cu2-xSe) theranostic nanoparticles. We synthesized a Cu2+-specific fluorescent probe (NCM), which can quickly and specifically react with copper ions to exhibit very strong near infrared fluorescence. The in vitro study shows that copper ions can be slowly released from Cu2-xSe nanoparticles in aqueous solution with the progress of their oxidation. The release of copper ions from Cu2-xSe nanoparticles in RAW 264.7 murine macrophages is very fast, evidenced by the gradual increase of fluorescence intensity and the diffusion of fluorescence from cytoplasm into nuclei. We also demonstrate the distribution, degradation, and the metabolism of ultrasmall Cu2-xSe nanoparticles by the in vivo fluorescence imaging, the blood routine test, blood biochemistry and histology analysis, and the characterization of copper transport and binding proteins. The results show that ultrasmall Cu2-xSe nanoparticles were mainly eliminated through feces and urine from the body within 72 h after intravenous injection, and the released copper ions did not cause severe toxicity. Our research highlights the great potential of copper chalcogenide nanoparticles in nanomedicine.
机译:纳米铜硫属化合物广泛然而,用于纳米药物动力学、降解和生物释放的铜离子通常的影响忽略,这对他们的未来是至关重要的临床翻译。体外和体内释放的铜离子聚乙烯吡咯烷酮(PVP)功能化超微硒化铜theranostic (Cu2-xSe)纳米粒子。荧光探针(不合格品),它可以迅速特别是与铜离子反应展览很强的近红外荧光。体外研究表明,铜离子可以缓慢释放Cu2-xSe纳米颗粒在水解决方案的进展氧化。从Cu2-xSe释放的铜离子纳米粒子在原始264.7小鼠巨噬细胞逐渐增加的非常快,证明了这一点荧光强度和的扩散荧光从细胞质到细胞核。演示的分布、降解和超微Cu2-xSe的新陈代谢由体内荧光纳米颗粒成像、血液常规试验,血液生化和组织学分析,描述的铜运输和绑定蛋白质。Cu2-xSe纳米粒子主要是消除通过粪便和尿液从身体在72 h静脉注射后,释放铜离子没有造成严重的毒性。研究突出了铜的巨大潜力硫族化物纳米粒子在纳米。

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