Clement Sandhya, Deng Wei, Camilleri Elizabeth, Wilson Brian C, Goldys Ewa M
Australian Research Council Centre of Excellence for Nanoscale BioPhotonics, Department of Physics and Astronomy, Macquarie University, NSW 2109, Australia.
Department of Medical Biophysics, University of Toronto/University Health Network, Ontario, Canada.
Sci Rep. 2016 Jan 28;6:19954. doi: 10.1038/srep19954.
Singlet oxygen is a primary cytotoxic agent in photodynamic therapy. We show that CeF3 nanoparticles, pure as well as conjugated through electrostatic interaction with the photosensitizer verteporfin, are able to generate singlet oxygen as a result of UV light and 8 keV X-ray irradiation. The X-ray stimulated singlet oxygen quantum yield was determined to be 0.79 ± 0.05 for the conjugate with 31 verteporfin molecules per CeF3 nanoparticle, the highest conjugation level used. From this result we estimate the singlet oxygen dose generated from CeF3-verteporfin conjugates for a therapeutic dose of 60 Gy of ionizing radiation at energies of 6 MeV and 30 keV to be (1.2 ± 0.7) × 10(8) and (2.0 ± 0.1) × 10(9) singlet oxygen molecules per cell, respectively. These are comparable with cytotoxic doses of 5 × 10(7)-2 × 10(9) singlet oxygen molecules per cell reported in the literature for photodynamic therapy using light activation. We confirmed that the CeF3-VP conjugates enhanced cell killing with 6 MeV radiation. This work confirms the feasibility of using X- or γ- ray activated nanoparticle-photosensitizer conjugates, either to supplement the radiation treatment of cancer, or as an independent treatment modality.
单线态氧是光动力疗法中的一种主要细胞毒性剂。我们发现,纯净的CeF3纳米颗粒以及通过与光敏剂维替泊芬进行静电相互作用而共轭的CeF3纳米颗粒,在紫外光和8 keV X射线照射下能够产生单线态氧。对于每个CeF3纳米颗粒共轭31个维替泊芬分子的共轭物(使用的最高共轭水平),测定其X射线激发的单线态氧量子产率为0.79±0.05。根据该结果,我们估计在6 MeV和30 keV能量下,对于60 Gy的电离辐射治疗剂量,CeF3 - 维替泊芬共轭物产生的单线态氧剂量分别为每个细胞(1.2±0.7)×10^8和(2.0±0.1)×10^9个单线态氧分子。这些剂量与文献中报道的使用光激活的光动力疗法中每个细胞5×10^7 - 2×10^9个单线态氧分子的细胞毒性剂量相当。我们证实CeF3 - VP共轭物增强了6 MeV辐射对细胞的杀伤作用。这项工作证实了使用X射线或γ射线激活的纳米颗粒 - 光敏剂共轭物的可行性,其既可以补充癌症的放射治疗,也可以作为一种独立的治疗方式。