Guangdong Provincial Key Laboratory of Biotechnology Candidate Drug Research, Guangdong Pharmaceutical University , Guangzhou 510006, P. R. China.
ACS Appl Mater Interfaces. 2017 Jun 7;9(22):18482-18492. doi: 10.1021/acsami.7b02977. Epub 2017 May 22.
Synergistic photodynamic therapy (PDT) that combines photosensitizers (PSs) to attack different key sites in cancer cells is very attractive. However, the use of multiple PSs may increase dark cytotoxicity. Additionally, realizing the multiple vein passage of several PSs through dosing could be a challenge in clinical treatment. To address these issues, a novel strategy that enables a single PS to ablate two key sites (i.e., cytomembranes on the outside and mitochondria on the inside) of cancer cells synergistically was proposed. Five new fluorinated ruthenium (II) complexes (Ru1-Ru5), which possessed excellent two-photon properties and good singlet oxygen quantum yields, were designed and synthesized. When incubated with HeLa cells, the complexes were observed on the cytomembranes at first. With an extension of the treatment time, both the cytomembranes and mitochondria were lit up by the complexes. Under two-photon laser irradiation, the mitochondria and cytomembranes were ablated simultaneously, and the HeLa cells were destroyed effectively by the complexes, whether the cells were in a monolayer or in multicellular spheroids. With the largest phototoxicity index under the two-photon laser, Ru4 was used for two-photon PDT of in vivo xenograft tumors and successfully inhibited the growth of the tumors. Our results emphasized that the strategy of attacking two key sites with a single PS is an efficient method for PDT.
协同光动力疗法(PDT)结合光敏剂(PS)攻击癌细胞的不同关键部位非常有吸引力。然而,使用多种 PS 可能会增加暗毒性。此外,通过给药实现几种 PS 的多条静脉通道可能是临床治疗中的一个挑战。为了解决这些问题,提出了一种新策略,使单个 PS 能够协同地消融癌细胞的两个关键部位(即细胞外膜和细胞内线粒体)。设计并合成了五个具有优异的双光子性质和良好的单线态氧量子产率的新型氟化钌(II)配合物(Ru1-Ru5)。当与 HeLa 细胞孵育时,复合物首先在细胞膜上观察到。随着治疗时间的延长,复合物同时点亮了细胞膜和线粒体。在双光子激光照射下,线粒体和细胞膜同时被消融,复合物有效地破坏了 HeLa 细胞,无论细胞是单层还是多细胞球体。Ru4 在双光子激光下具有最大的光毒性指数,用于体内异种移植肿瘤的双光子 PDT,并成功抑制了肿瘤的生长。我们的结果强调,用单个 PS 攻击两个关键部位的策略是 PDT 的一种有效方法。