College of Chemistry, Research Center for Analytical Sciences, State Key Laboratory of Medicinal Chemical Biology, Tianjin Key Laboratory of Biosensing and Molecular Recognition, Nankai University, Tianjin 300071, China.
National Chromatographic Research and Analysis Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
ACS Appl Mater Interfaces. 2020 Jun 3;12(22):24585-24598. doi: 10.1021/acsami.0c05154. Epub 2020 May 21.
Targeting enrichment of nanocarriers at tumor sites and effective drug release are critical in cancer treatment. Accordingly, we used fluorescent zeolitic imidazolate framework-8 nanoparticles loaded with doxorubicin (FZIF-8/DOX) as the core and a molecularly imprinted polymer (MIP) as the shell to synthesize tumor-sensitive biodegradable FZIF-8/DOX-MIP nanoparticles (FZIF-8/DOX-MIPs). The MIP prepared with the epitope of CD59 cell membrane glycoprotein as the template allowed FZIF-8/DOX-MIPs to be enriched to tumor sites by actively targeting recognition of MCF-7 cancer cells (CD59-positive). Moreover, using ,'-diacrylylcystamine as the cross-linker and dimethylaminoethyl methacrylate as the main monomer, the MIP's framework will be broken under the stimulation of a tumor microenvironment (high-concentration glutathione and weakly acidic), so that the internal FZIF-8/DOX is exposed to a microacidic environment to release DOX through further degradation. More importantly, the ability of FZIF-8/DOX-MIPs in targeted fluorescence imaging and effective drug release has been validated both in vitro and in vivo. Compared to other cells and nanoparticles, FZIF-8/DOX-MIPs were more capable of being phagocytosed by MCF-7 cells and were more lethal to MCF-7 cells. In the comparative experiments carried out on tumor-bearing mice, FZIF-8/DOX-MIPs had the best inhibitory effect on the growth of MCF-7 tumors. Furthermore, the FZIF-8/DOX-MIPs can serve as a diagnostic agent because of the active targeting of MCF-7 cells and the stronger red fluorescence of the embedded carbon quantum dots. Because of the active targeting ability, good biocompatibility, tumor-sensitive biodegradability, and effective drug release performance, FZIF-8/DOX-MIPs can be widely used in tumor imaging and treatment.
靶向富集于肿瘤部位的纳米载体和有效的药物释放是癌症治疗的关键。因此,我们使用负载阿霉素的荧光沸石咪唑酯骨架-8 纳米粒子(FZIF-8/DOX)作为核心,以分子印迹聚合物(MIP)作为外壳,合成了肿瘤敏感的可生物降解的 FZIF-8/DOX-MIP 纳米粒子(FZIF-8/DOX-MIPs)。以细胞膜糖蛋白 CD59 表位为模板制备的 MIP 允许 FZIF-8/DOX-MIPs 通过主动靶向识别 MCF-7 癌细胞(CD59 阳性)而富集到肿瘤部位。此外,使用二丙烯酰基半胱氨酸作为交联剂,以二甲氨基乙基甲基丙烯酸酯作为主单体,MIP 的骨架在肿瘤微环境(高浓度谷胱甘肽和弱酸性)的刺激下被破坏,使内部的 FZIF-8/DOX 暴露于微酸性环境中,通过进一步降解释放 DOX。更重要的是,FZIF-8/DOX-MIPs 在靶向荧光成像和有效药物释放方面的能力已在体外和体内得到验证。与其他细胞和纳米粒子相比,FZIF-8/DOX-MIPs 更能被 MCF-7 细胞吞噬,对 MCF-7 细胞的杀伤力更强。在荷瘤小鼠的对比实验中,FZIF-8/DOX-MIPs 对 MCF-7 肿瘤的生长具有最佳的抑制作用。此外,由于 MCF-7 细胞的主动靶向和嵌入的碳量子点的较强红色荧光,FZIF-8/DOX-MIPs 可以用作诊断剂。由于具有主动靶向能力、良好的生物相容性、肿瘤敏感的生物降解性和有效的药物释放性能,FZIF-8/DOX-MIPs 可广泛应用于肿瘤成像和治疗。