Federal Scientific Research Centre "Crystallography and Photonics" of Russian Academy of Sciences, Leninsky pr. 59, Moscow, 119333, Russia.
Nanoscale. 2017 Oct 12;9(39):14921-14928. doi: 10.1039/c7nr04092j.
Recently introduced upconversion nanoparticles (UCNPs) have pushed the depth of photodynamic therapy (PDT) treatment to the centimetre range by converting deeply-penetrating near-infrared (NIR) radiation to visible radiation for photoexcitation of PDT drugs. Here we demonstrate that the direct exposure of the cancer tissue to phototoxic ultraviolet radiation generated by NIR-photoexcited UCNPs enabled successful PDT. To this aim, core/shell UCNPs of the formula NaYF:YbTm/NaYF featuring an enhanced band in the ultraviolet UV-A and UV-B spectral bands were rationally designed and synthesised. Coupling UCNPs to the recombinant modules of the Designed Ankyrin Repeat Protein (DARPin) fused to a fluorescent protein mCherry allowed the target delivery of DARPin-mCherry/UCNP to human breast adenocarcinoma SK-BR-3 cells overexpressing HER2/neu receptors, as confirmed by fluorescence microscopy. DARPin-mCherry/UCNPs were demonstrated to be phototoxic to SK-BR-3 cells under 975 nm laser irradiation at a dose of 900 J cm due to the UV photoexcitation of endogenous photosensitizers and concomitant generation of reactive oxygen species. The Lewis lung cancer mouse model was employed to demonstrate the feasibility of PDT using UCNP-mediated UV excitation of endogenous photosensitizers in the tumor tissue at a NIR dose of 1200 J cm. This study paves the way for exploring and harnessing UV photoexcitation processes in deep tissues in vivo.
最近引入的上转换纳米粒子 (UCNP) 通过将深穿透近红外 (NIR) 辐射转换为可见辐射来对光动力治疗 (PDT) 药物进行光激发,从而将 PDT 的治疗深度推进到厘米范围。在这里,我们证明了癌症组织直接暴露于 NIR 光激发 UCNP 产生的光毒性紫外辐射能够成功进行 PDT。为此,我们合理设计并合成了具有增强的紫外光 (UV-A 和 UV-B) 光谱带的核/壳 UCNP,其化学式为 NaYF:YbTm/NaYF。将 UCNP 与融合了荧光蛋白 mCherry 的 Design Ankyrin Repeat Protein (DARPin) 的重组模块偶联,允许 DARPin-mCherry/UCNP 靶向递送至过表达 HER2/neu 受体的人乳腺癌 SK-BR-3 细胞,这一点通过荧光显微镜得到了证实。由于内源性光敏剂的 UV 光激发和活性氧的同时产生,DARPin-mCherry/UCNP 在 975nm 激光照射下,在 900J cm 的剂量下对 SK-BR-3 细胞表现出光毒性。在 Lewis 肺癌小鼠模型中,我们证明了在 NIR 剂量为 1200J cm 的情况下,使用 UCNP 介导的内源性光敏剂的 UV 激发进行 PDT 的可行性。本研究为探索和利用体内深部组织中的 UV 光激发过程铺平了道路。