首页> 外文期刊>Drug metabolism letters >Molecular analysis of the in vivo metabolism and biodistribution of metabolically and non-metabolically activated combi-molecules of the triazene class.
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Molecular analysis of the in vivo metabolism and biodistribution of metabolically and non-metabolically activated combi-molecules of the triazene class.

机译:三氮烯类代谢和非代谢活化组合分子的体内代谢和生物分布的分子分析。

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摘要

Combi-molecules are novel agents designed to be hydrolyzed into two bioactive species: an epidermal growth factor receptor (EGFR) tyrosine kinase (TK) inhibitor + a DNA alkylating agent. With the purpose of enhancing the tumour concentration of the bioactive species, we synthesized and compared the activities of RB107, a quinazolinotriazene designed to generate the bioactive BJ2000 upon hydrolysis, ZRDM and RB107ZR that require metabolic activation to generate BJ2000. The results showed that RB107 released the highest level of BJ2000 and its degradation product FD105 in vivo and high levels of the DNA alkylating methyl diazonium ion in the brain, kidney, liver and the DU145 tumours as confirmed by (14)C-labeling. The results in toto suggest that RB107 was stable enough to deliver the bioactive species to the tumour site and for optimal tumour distribution of the bioactive species, combi-molecules of the triazene class must be designed to be primarily degraded by hydrolytic cleavage and not by metabolic activation.
机译:组合分子是设计用于水解为两种生物活性物质的新型药物:表皮生长因子受体(EGFR)酪氨酸激酶(TK)抑制剂+ DNA烷基化剂。为了提高生物活性物种的肿瘤浓度,我们合成并比较了RB107的活性,RB107是一种经水解可产生生物活性BJ2000的喹唑啉三氮烯,ZRDM和RB107ZR需要代谢活化才能生成BJ2000。结果表明,通过(14)C标记证实,RB107在体内释放最高水平的BJ2000及其降解产物FD105,并在脑,肾,肝和DU145肿瘤中高水平释放DNA烷基化甲基重氮离子。结果表明,RB107足够稳定,可以将生物活性物质传递到肿瘤部位,并且为了使生物活性物质达到最佳的肿瘤分布,必须将三氮烯类组合分子设计为主要通过水解裂解而不是通过代谢进行降解。激活。

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