Shamis Marina, Lode Holger N, Shabat Doron
School of Chemistry, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel-Aviv University, Tel Aviv 69978, Israel.
J Am Chem Soc. 2004 Feb 18;126(6):1726-31. doi: 10.1021/ja039052p.
Self-immolative dendrimers have recently been developed and introduced as a potential platform for a multi-prodrug. These unique structural dendrimers can release all of their tail units, through a self-immolative chain fragmentation, which is initiated by a single cleavage at the dendrimer's core. Incorporation of drug molecules as the tail units and an enzyme substrate as the trigger can generate a multi-prodrug unit that will be activated with a single enzymatic cleavage. We have synthesized the first generation of dendritic prodrugs with doxorubicin and camptothecin as tail units and a retro-aldol retro-Michael focal trigger, which can be cleaved by catalytic antibody 38C2. The bioactivation of the dendritic prodrugs was evaluated in cell-growth inhibition assay with the Molt-3 leukemia cell line in the presence and the absence of antibody 38C2. The dendritic unit was applied as a platform for a heterodimeric prodrug, which achieved a remarkable increase in toxicity with its bioactivation.
自毁型树枝状大分子最近已被开发并作为一种潜在的多前药平台引入。这些独特结构的树枝状大分子可以通过自毁型链断裂释放其所有尾部单元,这种断裂由树枝状大分子核心的单次切割引发。将药物分子作为尾部单元并将酶底物作为触发剂掺入,可以生成一个多前药单元,该单元将通过单次酶促切割被激活。我们已经合成了第一代树枝状前药,其以阿霉素和喜树碱作为尾部单元,并以逆羟醛缩合-逆迈克尔反应为焦点触发剂,该触发剂可被催化抗体38C2切割。在有和没有抗体38C2的情况下,通过对Molt-3白血病细胞系进行细胞生长抑制试验,评估了树枝状前药的生物活化作用。树枝状单元被用作异二聚体前药的平台,其生物活化作用使其毒性显著增加。