Department of Chemistry, Federal University of Santa Catarina─UFSC, Campus Trindade, Florianópolis, Santa Catarina 88040-900, Brazil.
Champalimaud Centre for the Unknown, Champalimaud Foundation, Av. Brasilia, Lisboa 1400-038, Portugal.
J Am Chem Soc. 2023 May 17;145(19):10790-10799. doi: 10.1021/jacs.3c01960. Epub 2023 May 3.
The ability to control the activation of prodrugs by transition metals has been shown to have great potential for controlled drug release in cancer cells. However, the strategies developed so far promote the cleavage of C-O or C-N bonds, which limits the scope of drugs to only those that present amino or hydroxyl groups. Here, we report the decaging of an -quinone prodrug, a propargylated β-lapachone derivative, through a palladium-mediated C-C bond cleavage. The reaction's kinetic and mechanistic behavior was studied under biological conditions along with computer modeling. The results indicate that palladium (II) is the active species for the depropargylation reaction, activating the triple bond for nucleophilic attack by a water molecule before the C-C bond cleavage takes place. Palladium iodide nanoparticles were found to efficiently trigger the C-C bond cleavage reaction under biocompatible conditions. In drug activation assays in cells, the protected analogue of β-lapachone was activated by nontoxic amounts of nanoparticles, which restored drug toxicity. The palladium-mediated -quinone prodrug activation was further demonstrated in zebrafish tumor xenografts, which resulted in a significant anti-tumoral effect. This work expands the transition-metal-mediated bioorthogonal decaging toolbox to include cleavage of C-C bonds and payloads that were previously not accessible by conventional strategies.
通过过渡金属来控制前药的激活,已经被证明在癌细胞中具有控制药物释放的巨大潜力。然而,迄今为止开发的策略促进了 C-O 或 C-N 键的断裂,这限制了药物的范围,只能是那些具有氨基或羟基的药物。在这里,我们报告了通过钯介导的 C-C 键断裂,对 -醌前药,即炔丙基化的β-拉帕酮衍生物进行脱笼。在生物条件下以及通过计算机建模,研究了该反应的动力学和机理行为。结果表明,钯(II)是脱炔丙基反应的活性物质,在 C-C 键断裂发生之前,激活三键以接受水分子的亲核攻击。发现钯碘纳米颗粒在生物相容条件下能够有效地引发 C-C 键断裂反应。在细胞中的药物激活实验中,用非毒性量的纳米颗粒激活了 β-拉帕酮的保护类似物,恢复了药物毒性。钯介导的 -醌前药激活在斑马鱼肿瘤异种移植中进一步得到了证明,这导致了显著的抗肿瘤效果。这项工作扩展了过渡金属介导的生物正交脱笼工具包,包括了以前通过传统策略无法实现的 C-C 键断裂和有效载荷。