化学
二硫键
前药
共价键
生物利用度
连接器
组合化学
体内
半胱氨酸
氨基甲酸酯
立体化学
有机化学
生物化学
酶
药理学
生物技术
操作系统
生物
医学
计算机科学
作者
Huicong Zhang,Kuanglei Wang,Kexin Na,Dan Li,Zhenbao Li,Dongyang Zhao,Zhong Liu,Menglin Wang,Longfa Kou,Cong Luo,Haotian Zhang,Qiming Kan,Huaiwei Ding,He Zhang,Jin Sun
标识
DOI:10.1021/acs.jmedchem.8b00293
摘要
To address the challenges of rapid enzyme inactivation, poor tumor targeting, and acquired drug resistance in gemcitabine (GEM) application, we report two groups of maleimide-functionalized GEM prodrugs conjugating covalently in situ with Cys-34 of blood-circulating albumin and then resulting in macromolecular prodrugs after intravenous administration. Tailored and accurate controlled release was achieved through different combinations of linkage bonds, relatively stable and labile (carbamate and carbonate, respectively), and linkers with or without insertion of a disulfide bond. Interestingly, we found that the overall advantages or disadvantages brought by a disulfide bond varied with the stability of the linkage bond. Finally, the carbonate linkage bond-bearing group, especially the one with a linker lacking a disulfide bond, stood out with remarkably increased bioavailability (21-fold greater than GEM) and efficient tumor free-GEM accumulation (8-fold of GEM), which consequently contributed to excellent in vivo antitumor efficacy.
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