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Fabricating upconversion fluorescent nanoparticles modified substrate for dynamical control of cancer cells and pathogenic bacteria

机译:制造上转换荧光纳米颗粒改性基质,用于癌细胞和病原细菌的动态控制

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Lanthanide-doped upconversion nanoparticles (UCNPs) have attracted widespread interests in the field of biomedicine because of their unique upconverting capability by converting near infrared (NIR) excitation to visible or ultraviolet (UV) emission. Here, we developed a novel UCNP-based substrate for dynamic capture and release of cancer cells and pathogenic bacteria under NIR-control. The UCNPs harvest NIR light and convert it to ultraviolet light, which subsequently result in the cleavage of photoresponsive linker (PR linker) from the substrate, and on demand allows the release of a captured cell. The results show that after seeding cells for 5 h, the cells were efficiently captured on the surface of the substrate and +/- 89.4% of the originally captured S. aureus was released from the surface after exposure to 2 W/cm(2) NIR light for 30 min, and +/- 92.1% of HepG2 cells. These findings pro-vide a unique platform for exploring an entirely new application field for this promising luminescent nanomaterial.
机译:镧系元素掺杂的上转化纳米颗粒(UCNP)在生物医学领域吸引了生物医学领域的广泛兴趣,因为它们通过将近红外(NIR)激发转换为可见或紫外(UV)排放而具有独特的上变频能力。在这里,我们开发了一种新的UCNP基础基底,用于在NIR对照下动态捕获和释放癌细胞和病原细菌。 UCNPS收获Nir光并将其转换为紫外光,随后导致来自基板的光响应链接器(PR接头)的切割,并且根据需求允许释放捕获的细胞。结果表明,在播种细胞5小时后,在暴露于2W / cm(2)后,在底物表面上有效地捕获细胞的底物表面,+/- 89.4%的最初捕获的金黄色葡萄球菌释放出来(2) NIR光线30分钟,+/- 92.1%的HEPG2细胞。这些调查结果专用了一个独特的平台,用于探索这一有希望的发光纳米材料的完全新的应用领域。

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