Synthesis of self-immolative glucuronide-based prodrugs of a phenol mustard.

Anti-cancer drug design Pub Date : 1998-12-01
R Lougerstay-Madec, J C Florent, C Monneret, F Nemati, M F Poupon
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Abstract

The design and synthesis of the mustard pro-prodrugs which can be used in ADEPT is reported. Prodrugs 1 and 2 include a glucuronide group which is connected to the drug via an aromatic and/or aliphatic bis-carbamate spacer. The design of these new prodrugs takes advantage of a spontaneous 1,6-elimination and/or an intramolecular cyclization reaction after enzymatic cleavage. Thus, enzymatic-catalyzed hydrolysis of the glucuronyl moiety of 1 by Escherichia coli beta-glucuronidase results in the liberation of the parent mustard drug 20 with formation of CO2, 2-nitro-4-hydroxymethylphenol 19 and dimethylimidazolidinone 21. Surprisingly, prodrug 2 was not cleaved under the same conditions. According to in vitro experiments, prodrugs 1 and 2 were approximately 50- and 80-fold less cytotoxic than the parent drug and, when treated with beta-glucuronidase, the level of cytotoxic activity of 1 became comparable to that of the drug. Stability of 1 in phosphate buffer was satisfactory. These results demonstrate that 1 is a prodrug that can be specifically activated to release the cytotoxic agent.

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苯酚芥菜自焚型葡萄糖醛酸酯前药的合成。
本文报道了用于内源性内源性疾病的芥菜前药的设计与合成。前药1和2包括葡萄糖醛酸基团,其通过芳香和/或脂肪族双氨基甲酸酯间隔物与药物连接。这些新前体药物的设计利用了酶裂解后自发的1,6消除和/或分子内环化反应。因此,大肠杆菌β -葡萄糖醛酸酶在酶催化下水解1的葡萄糖醛酸基部分,导致母体芥菜药物20被释放,形成CO2、2-硝基-4-羟甲基苯酚19和二甲基咪唑烷酮21。令人惊讶的是,在相同的条件下,前药2没有被裂解。根据体外实验,前药1和2的细胞毒性比母体药物低约50和80倍,当用β -葡糖苷酶处理时,1的细胞毒性活性水平与药物相当。1在磷酸盐缓冲液中的稳定性令人满意。这些结果表明,1是一种前药,可以被特异性激活释放细胞毒性因子。
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