Department of Geriatrics, First Affiliated Hospital to Nanjing Medical University, Nanjing, China.
Int J Nanomedicine. 2012;7:5183-90. doi: 10.2147/IJN.S34886. Epub 2012 Oct 2.
Paclitaxel (Ptx), one of the most widely used anticancer agents, has demonstrated extraordinary activities against a variety of solid tumors. However, the therapeutic response of Ptx is often associated with severe side effects caused by its nonspecific cytotoxic effects and special solvents (Cremophor EL(®)). The current study reports the stable controlled release of Ptx/tetrandrine (Tet)-coloaded nanoparticles by amphilic methoxy poly(ethylene glycol)-poly(caprolactone) block copolymers. There were three significant findings. Firstly, Tet could effectively stabilize Ptx-loaded nanoparticles with the coencapsulation of Tet and Ptx. The influence of different Ptx/Tet feeding ratios on the size and loading efficiency of the nanoparticles was also explored. Secondly, the encapsulation of Tet and Ptx into nanoparticles retains the synergistic anticancer efficiency of Tet and Ptx against mice hepatoma H22 cells. Thirdly, in the in vivo evaluation, intratumoral administration was adopted to increase the site-specific delivery. Ptx/Tet nanoparticles, when delivered intratumorally, exhibited significantly improved antitumor efficacy; moreover, they substantially increased the overall survival in an established H22-transplanted mice model. Further investigation into the anticancer mechanisms of this nanodelivery system is under active consideration as a part of this ongoing research. The results suggest that Ptx/Tet-coloaded nanoparticles could be a potential useful chemotherapeutic formulation for liver cancer therapy.
紫杉醇(Ptx)是最广泛使用的抗癌药物之一,对各种实体瘤表现出非凡的活性。然而,Ptx 的治疗反应常常与由于其非特异性细胞毒性作用和特殊溶剂(Cremophor EL®)引起的严重副作用相关。本研究报告了通过两亲性甲氧基聚(乙二醇)-聚(己内酯)嵌段共聚物稳定控制释放紫杉醇/汉防己甲素(Tet)共载纳米粒。有三个重要发现。首先,Tet 可以有效地稳定 Ptx 载药纳米粒,同时共包载 Tet 和 Ptx。还探索了不同 Ptx/Tet 进料比对纳米粒大小和载药效率的影响。其次,将 Tet 和 Ptx 包封到纳米粒中保留了 Tet 和 Ptx 对小鼠肝癌 H22 细胞的协同抗癌效率。第三,在体内评价中,采用瘤内给药以增加靶向递药。Ptx/Tet 纳米粒瘤内给药时,表现出显著提高的抗肿瘤疗效;此外,它们在已建立的 H22 移植小鼠模型中显著提高了总生存率。作为正在进行的研究的一部分,正在积极考虑进一步研究这种纳米递药系统的抗癌机制。结果表明,Ptx/Tet 共载纳米粒可能是一种用于肝癌治疗的有潜力的有效化疗制剂。