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探究硫/硒/碳键对癌症治疗前药纳米组装体的影响。

Probing the impact of sulfur/selenium/carbon linkages on prodrug nanoassemblies for cancer therapy.

机构信息

Department of Pharmaceutics, Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang, 110016, China.

Department of Pharmacy, Cancer Hospital of China Medical University, Liaoning Cancer Hospital & Institute, Shenyang, 110042, China.

出版信息

Nat Commun. 2019 Jul 19;10(1):3211. doi: 10.1038/s41467-019-11193-x.

Abstract

Tumor cells are characterized as redox-heterogeneous intracellular microenvironment due to the simultaneous overproduction of reactive oxygen species and glutathione. Rational design of redox-responsive drug delivery systems is a promising prospect for efficient cancer therapy. Herein, six paclitaxel-citronellol conjugates are synthesized using either thioether bond, disulfide bond, selenoether bond, diselenide bond, carbon bond or carbon-carbon bond as linkages. These prodrugs can self-assemble into uniform nanoparticles with ultrahigh drug-loading capacity. Interestingly, sulfur/selenium/carbon bonds significantly affect the efficiency of prodrug nanoassemblies. The bond angles/dihedral angles impact the self-assembly, stability and pharmacokinetics. The redox-responsivity of sulfur/selenium/carbon bonds has remarkable influence on drug release and cytotoxicity. Moreover, selenoether/diselenide bond possess unique ability to produce reactive oxygen species, which further improve the cytotoxicity of these prodrugs. Our findings give deep insight into the impact of chemical linkages on prodrug nanoassemblies and provide strategies to the rational design of redox-responsive drug delivery systems for cancer therapy.

摘要

肿瘤细胞由于活性氧和谷胱甘肽的同时过度产生而具有氧化还原异质性的细胞内微环境。合理设计氧化还原响应性药物传递系统是高效癌症治疗的有前途的前景。在此,使用硫醚键、二硫键、硒醚键、二硒键、碳键或碳-碳键作为连接体合成了六种紫杉醇-香茅醇缀合物。这些前药可以自组装成具有超高载药能力的均匀纳米颗粒。有趣的是,硫/硒/碳键显着影响前药纳米组装体的效率。键角/二面角影响自组装、稳定性和药代动力学。硫/硒/碳键的氧化还原响应性对药物释放和细胞毒性有显着影响。此外,硒醚/二硒键具有产生活性氧的独特能力,进一步提高了这些前药的细胞毒性。我们的研究结果深入了解了化学连接对前药纳米组装体的影响,并为癌症治疗的氧化还原响应性药物传递系统的合理设计提供了策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38f5/6642185/d54498eac8ef/41467_2019_11193_Fig1_HTML.jpg

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