González-Béjar María, Liras Marta, Francés-Soriano Laura, Voliani Valerio, Herranz-Pérez Vicente, Duran-Moreno Maria, Garcia-Verdugo Jose M, Alarcon Emilio I, Scaiano Juan C, Pérez-Prieto Julia
Instituto de Ciencia Molecular/ICMOL, Universidad de Valencia, C/José Beltrán 2, 46980, Paterna, Valencia, Spain.
J Mater Chem B. 2014 Jul 28;2(28):4554-4563. doi: 10.1039/c4tb00340c. Epub 2014 Jun 16.
We report the preparation of water-dispersible, ca. 30 nm-sized nanohybrids containing NaYF:Er, Yb up-conversion nanoparticles (UCNPs), capped with a polyethylene glycol (PEG) derivative and highly loaded with a singlet oxygen photosensitizer, specifically a diiodo-substituted Bodipy (IBDP). The photosensitizer, bearing a carboxylic group, was anchored to the UCNP surface and, at the same time, embedded in the PEG capping; the combined action of the UCNP surface and PEG facilitated the loading for an effective energy transfer and, additionally, avoided photosensitizer leaching from the nanohybrid (UCNP-IBDP@PEG). The effectiveness of the nanohybrids in generating singlet oxygen after near-infrared (NIR) excitation (975 nm) with a continuous wavelength (CW) laser was evidenced by using a probe molecule. In vitro assays demonstrated that the UCNP-IBDP@PEG nanohybrid was taken up by the SH-SY5Y human neuroblastoma-derived cells showing low cytotoxicity. Moreover, ca. 50% cancer cell death was observed after NIR irradiation (45 min, 239 mW).
我们报道了一种水分散性的约30纳米大小的纳米杂化物的制备,该杂化物包含NaYF:Er、Yb上转换纳米粒子(UCNPs),表面由聚乙二醇(PEG)衍生物包覆,并高度负载单线态氧光敏剂,具体为二碘取代的Bodipy(IBDP)。带有羧基的光敏剂被锚定在UCNP表面,同时嵌入PEG包覆层中;UCNP表面和PEG的协同作用促进了负载,实现了有效的能量转移,此外,还避免了光敏剂从纳米杂化物(UCNP-IBDP@PEG)中浸出。通过使用探针分子证明了纳米杂化物在连续波长(CW)激光近红外(NIR)激发(975 nm)后产生单线态氧的有效性。体外实验表明,UCNP-IBDP@PEG纳米杂化物被SH-SY5Y人神经母细胞瘤衍生细胞摄取,显示出低细胞毒性。此外,近红外照射(45分钟,239毫瓦)后观察到约50%的癌细胞死亡。