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上转换纳米颗粒表面包覆的光敏剂在 980nm 近红外激发下产生活性氧物种。

Photosensitizer coated upconversion nanoparticles for triggering reactive oxygen species under 980 nm near-infrared excitation.

机构信息

Department of Materials Science, School of Physical Science and Technology, Key Laboratory of Special Function Materials and Structure Design of Ministry of Education, Lanzhou University, Lanzhou 730000, P. R. China.

出版信息

J Mater Chem B. 2019 Dec 14;7(46):7306-7313. doi: 10.1039/c9tb01629e. Epub 2019 Oct 31.

Abstract

Rare-earth-based upconversion nanotechnology has recently shown great promise for photodynamic therapy (PDT). NaGd(MoO)-based materials have a scheelite structure with good thermal and chemical stability, and excellent up-conversion luminescence properties after co-doping rare earth ions (Tm and Yb), which can effectively excite the photosensitizer to generate reactive oxygen species (ROS). In this work, Tm and Yb co-doped NaGd(MoO) upconversion nanoparticles (UCNPs) are prepared by the sol-gel method and further complexed with photosensitizer MC540 (UCNPs@MC540). The prepared UCNPs showed a tetragonal phase and revealed nanoparticles with an average size of 150 nm. Under 980 nm excitation, the UCNPs exhibited a dominant blue emission band (G→H) of Tm, while the optimum doping concentration was identified at 1% Tm and 20% Yb. In addition, the blue emissions of Tm simultaneously activate the MC540 composited on the surface of the nanoparticles to produce a large amount of singlet oxygen (O), which is detected by DCFH-DA. Moreover, UCNPs@MC540 also shows strong emission at around 800 nm near-infrared. The results show that the UCNPs@MC540 materials have potential application prospects in PDT and biological imaging.

摘要

基于稀土的上转换纳米技术在光动力疗法(PDT)方面显示出巨大的潜力。基于 NaGd(MoO)的材料具有白钨矿结构,具有良好的热稳定性和化学稳定性,并且在共掺杂稀土离子(Tm 和 Yb)后具有优异的上转换发光性能,可有效激发光敏剂产生活性氧物种(ROS)。在这项工作中,通过溶胶-凝胶法制备了 Tm 和 Yb 共掺杂的 NaGd(MoO)上转换纳米粒子(UCNPs),并进一步与光敏剂 MC540 复合(UCNPs@MC540)。制备的 UCNPs 呈现四方相,并显示出平均粒径为 150nm 的纳米粒子。在 980nm 激发下,UCNPs 表现出 Tm 的主导蓝色发射带(G→H),而最佳掺杂浓度被确定为 1%Tm 和 20%Yb。此外,Tm 的蓝色发射同时激活了复合在纳米粒子表面的 MC540,产生大量的单线态氧(O),这可以通过 DCFH-DA 来检测。此外,UCNPs@MC540 在近红外 800nm 左右也显示出强烈的发射。结果表明,UCNPs@MC540 材料在 PDT 和生物成像方面具有潜在的应用前景。

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