Department of Chemistry, College of Chemistry and Materials Science, Jinan University, Guangzhou 510632, China.
Nanoscale. 2019 May 16;11(19):9661-9678. doi: 10.1039/c9nr01904a.
Combined treatment based on tumor-targeted nanoparticles has become one of the most promising anticancer strategies. Moreover, bispecific antibodies have been designed as linkers to promote the interaction between natural killer (NK) cells and tumor cells, while triggering NK cell-mediated target cell lysis. Here, we adopted a novel design that uses PEGylated hollow mesoporous ruthenium nanoparticles as a carrier to load the fluorescent anti-tumor complex ([Ru(bpy)2(tip)]2+, RBT) and a conjugate with bispecific antibodies (SS-Fc). By accurately targeting carcinoembryonic antigen overexpressed in colorectal cancer cells, HMRu@RBT-SS-Fc significantly improved selective penetration in vitro. The functionalized nanocomplex effectively engaged NK cells and possessed excellent near infrared-sensitive cytotoxicity. Systematic in vivo studies clearly demonstrated the high tumor targeting and anticancer activity in heterotopic colorectal tumor model via combined photothermal and immune therapy. This nanosystem establishes a new platform for future image-guided drug delivery and highly efficient cancer therapy.
基于肿瘤靶向纳米粒子的联合治疗已成为最有前途的抗癌策略之一。此外,双特异性抗体已被设计为连接子,以促进自然杀伤 (NK) 细胞与肿瘤细胞之间的相互作用,同时触发 NK 细胞介导的靶细胞裂解。在这里,我们采用了一种新的设计,使用聚乙二醇化的中空介孔钌纳米粒子作为载体来负载荧光抗肿瘤复合物 ([Ru(bpy)2(tip)]2+,RBT) 和带有双特异性抗体的缀合物 (SS-Fc)。通过精确靶向结直肠癌细胞中过表达的癌胚抗原,HMRu@RBT-SS-Fc 显著提高了体外选择性穿透能力。功能化的纳米复合物有效地与 NK 细胞结合,并具有优异的近红外敏感细胞毒性。系统的体内研究清楚地证明了通过光热和免疫联合治疗在异位结直肠肿瘤模型中的高肿瘤靶向和抗癌活性。该纳米系统为未来的图像引导药物输送和高效癌症治疗建立了一个新的平台。