通过在聚合物纳米颗粒中双控释渥曼青霉素和多西他赛改善癌症放化疗治疗
Improving Cancer Chemoradiotherapy Treatment by Dual Controlled Release of Wortmannin and Docetaxel in Polymeric Nanoparticles.
作者信息
Au Kin Man, Min Yuanzeng, Tian Xi, Zhang Longzhen, Perello Virginia, Caster Joseph M, Wang Andrew Z
机构信息
Department of Radiation Oncology, Xuzhou Medical School , Xuzhou, China.
出版信息
ACS Nano. 2015 Sep 22;9(9):8976-96. doi: 10.1021/acsnano.5b02913. Epub 2015 Aug 25.
Combining molecularly targeted agents and chemotherapeutics is an emerging strategy in cancer treatment. We engineered sub-50 nm diameter diblock copolymer nanoparticles (NPs) that can sequentially release wortmannin (Wtmn, a cell signaling inhibitor) and docetaxel (Dtxl, genotoxic anticancer agent) to cancer cells. These NPs were studied in chemoradiotherapy, an important cancer treatment paradigm, in the preclinical setting. We demonstrated that Wtmn enhanced the therapeutic efficacy of Dtxl and increased the efficiency of radiotherapy (XRT) in H460 lung cancer and PC3 prostate cells in culture. Importantly, we showed that NPs containing both Wtmn and Dtxl release the drugs in a desirable sequential fashion to maximize therapeutic efficacy in comparison to administering each drug alone. An in vivo toxicity study in a murine model validated that NPs containing both Dtxl and Wtmn do not have a high toxicity profile. Lastly, we demonstrated that Dtxl/Wtmn-coencapsulated NPs are more efficient than each single-drug-loaded NPs or a combination of both single-drug-loaded NPs in chemoradiotherapy using xenograft models. Histopathological studies and correlative studies support that the improved therapeutic efficacy is through changes in signaling pathways and increased tumor cell apoptosis. Our findings suggest that our nanoparticle system led to a dynamic rewiring of cellular apoptotic pathways and thus improve the therapeutic efficiency.
将分子靶向药物与化疗药物联合使用是癌症治疗中一种新兴的策略。我们设计了直径小于50纳米的双嵌段共聚物纳米颗粒(NPs),其能够向癌细胞依次释放渥曼青霉素(Wtmn,一种细胞信号抑制剂)和多西他赛(Dtxl,基因毒性抗癌剂)。在临床前环境中,对这些纳米颗粒进行了化学放射治疗(一种重要的癌症治疗模式)方面的研究。我们证明,Wtmn增强了Dtxl的治疗效果,并提高了培养的H460肺癌细胞和PC3前列腺癌细胞的放射治疗(XRT)效率。重要的是,我们表明,与单独施用每种药物相比,同时含有Wtmn和Dtxl的纳米颗粒以理想的顺序释放药物,从而使治疗效果最大化。在小鼠模型中进行的体内毒性研究证实,同时含有Dtxl和Wtmn的纳米颗粒没有高毒性特征。最后,我们证明,在使用异种移植模型的化学放射治疗中,Dtxl/Wtmn共封装的纳米颗粒比每种单药负载的纳米颗粒或两种单药负载纳米颗粒的组合更有效。组织病理学研究和相关性研究支持,治疗效果的改善是通过信号通路的改变和肿瘤细胞凋亡的增加实现的。我们的研究结果表明,我们的纳米颗粒系统导致细胞凋亡途径的动态重新布线,从而提高了治疗效率。