State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, 1295 Ding-xi Road, Shanghai 200050 (P.R. China).
Cancer Research Institute, Shanghai Cancer Hospital, Fudan University, 270 Dong-an Road, Shanghai 200032 (P.R. China).
Angew Chem Int Ed Engl. 2015 Jul 6;54(28):8105-9. doi: 10.1002/anie.201500478. Epub 2015 May 26.
Local hypoxia in tumors is an undesirable consequence of photodynamic therapy (PDT), which will lead to greatly reduced effectiveness of this therapy. Bioreductive pro-drugs that can be activated at low-oxygen conditions will be highly cytotoxic under hypoxia in tumors. Based on this principle, double silica-shelled upconversion nanoparticles (UCNPs) nanostructure capable of co-delivering photosensitizer (PS) molecules and a bioreductive pro-drug (tirapazamine, TPZ) were designed (TPZ-UC/PS), with which a synergetic tumor therapeutic effect has been achieved first by UC-based (UC-) PDT under normal oxygen environment, immediately followed by the induced cytotoxicity of activated TPZ when oxygen is depleted by UC-PDT. Treatment with TPZ-UC/PS plus NIR laser resulted in a remarkably suppressed tumor growth as compared to UC-PDT alone, implying that the delivered TPZ has a profound effect on treatment outcomes for the much-enhanced cytotoxicity of TPZ under PDT-induced hypoxia.
肿瘤局部缺氧是光动力疗法(PDT)的一种不良后果,这将极大地降低这种疗法的效果。可在低氧条件下激活的生物还原前药在肿瘤缺氧时将具有高度细胞毒性。基于这一原理,设计了能够共递送光敏剂(PS)分子和生物还原前药(替拉扎胺,TPZ)的双硅壳上转换纳米粒子(UCNPs)纳米结构(TPZ-UC/PS),通过正常氧环境下基于 UC 的(UC-)PDT 首先实现协同肿瘤治疗效果,然后由 UC-PDT 耗尽氧气时激活的 TPZ 引起细胞毒性。与单独的 UC-PDT 相比,用 TPZ-UC/PS 加近红外激光治疗导致肿瘤生长明显受到抑制,这表明所递送的 TPZ 对治疗结果有深远影响,因为在 PDT 诱导的缺氧下,TPZ 的细胞毒性大大增强。