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Mixed-charge modification as a robust method to realize the antiviral ability of gold nanoparticles in a high protein environment

机译:Mixed-charge修改一个健壮的方法意识到黄金的抗病毒能力纳米粒子在高蛋白质环境

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Pandemics caused by viruses have resulted in incalculable losses to human beings, which are exacerbated due to the lack of antiviral drugs. Sulfonic group modified nanomedicine has been proved to possess a broad-spectrum antiviral ability. However, it is very challenging to maintain the antiviral activity in a high protein environment in vivo. To improve the tolerance to the complex biological environment, sulfonic mixed-charge modified gold nanoparticles (MC_AuNPs) were prepared in this research by introducing positively charged ligands into sulfonic ligand modified gold nanoparticles. The MC_AuNPs showed excellent non-fouling ability while retaining comparable antiviral ability to single sulfonic ligand modified gold nanoparticles (MDS_AuNPs). The MC_AuNPs maintained their antiviral ability in 10 mg mL−1 protein solutions, but the MDS_AuNPs completely lost their antiviral capability in 1 mg mL−1 protein medium. The mixed-charge modification strategy provides a practical avenue to maintain the antiviral capability of HSPG mimicking nanoparticles in high protein environments.
机译:造成大流行病毒导致是人类不可估量的损失加剧了由于缺少抗病毒药物。磺酸基改性纳米被证明具有广谱抗病毒能力。保持高的抗病毒活性的蛋白质体内环境。复杂的生物环境,磺酸mixed-charge改性金纳米粒子(MC_AuNPs)准备在这个研究带正电的配体引入磺酸配体修饰金纳米粒子。MC_AuNPs显示良好的防污底的能力同时保留可比抗病毒能力单磺酸配体修改黄金维护他们的抗病毒能力在10毫克毫升−1蛋白质的解决方案,但MDS_AuNPs完全失去了在1毫克毫升−1抗病毒能力蛋白质中。战略提供了一个实用的途径维护HSPG模仿的抗病毒能力在高蛋白质环境中纳米颗粒。

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