Broekgaarden Mans, Weijer Ruud, van Wijk Alebert C, Cox Ruud C, Egmond Maarten R, Hoebe Ron, van Gulik Thomas M, Heger Michal
J Biomed Nanotechnol. 2017 Feb;13(2):204-20. doi: 10.1166/jbn.2017.2327.
The efficacy of photodynamic therapy (PDT) in some solid tumors is limited by the poor biodistributive properties of conventional photosensitizers and a natural predisposition of tumor cells to survive hypoxia and oxidative stress. This study investigated the therapeutic potential of a third-generation photosensitizer, liposomal zinc phthalocyanine (ZnPC), in combination with the hypoxic cytotoxin tirapazamine (TPZ). TPZ induces DNA double strand breaks (DSBs) under hypoxic conditions and subsequent apoptosis via p53 signaling. Experiments were performed in tumor cells with functional p53 (Sk-Cha1) and dysfunctional p53 (A431). The combination therapy of TPZ and PDT induced DNA DSBs and cell cycle stalling and enhanced the cytotoxicity of PDT by exacerbating apopotic and non-apoptotic tumor cell death. These phenomena occurred regardless of oxygen tension and the mechanism of cell death differed per cell line. Liposomes containing both ZnPC and TPZ exhibited no dark toxicity but were more lethal to both cell types after PDT compared to ZnPC-liposomes lacking TPZ—an effect that was more pronounced under hypoxic conditions. In conclusion, TPZ is a suitable pharmaceutical compound to increase PDT efficacy by exploiting the post-PDT tumor hypoxia. The inclusion of TPZ and ZnPC into a single liposomal delivery system was feasible. The PDT strategy described in this study may be valuable for the treatment of PDT-recalcitrant tumors.
光动力疗法(PDT)在某些实体瘤中的疗效受到传统光敏剂较差的生物分布特性以及肿瘤细胞在缺氧和氧化应激下天然存活倾向的限制。本研究调查了第三代光敏剂脂质体锌酞菁(ZnPC)与缺氧细胞毒素替拉扎明(TPZ)联合使用的治疗潜力。TPZ在缺氧条件下诱导DNA双链断裂(DSB),并通过p53信号传导随后诱导细胞凋亡。在具有功能性p53(Sk-Cha1)和功能性缺失p53(A431)的肿瘤细胞中进行了实验。TPZ与PDT的联合治疗诱导了DNA DSB和细胞周期停滞,并通过加剧凋亡和非凋亡肿瘤细胞死亡增强了PDT的细胞毒性。这些现象与氧张力无关,并且每种细胞系的细胞死亡机制不同。同时含有ZnPC和TPZ的脂质体没有暗毒性,但与缺乏TPZ的ZnPC脂质体相比,在PDT后对两种细胞类型的杀伤力更大——这种效应在缺氧条件下更为明显。总之,TPZ是一种合适的药物化合物,可通过利用PDT后的肿瘤缺氧来提高PDT疗效。将TPZ和ZnPC纳入单一脂质体递送系统是可行的。本研究中描述的PDT策略可能对治疗对PDT耐药的肿瘤具有重要价值。