Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543.
Dalton Trans. 2019 Jun 7;48(21):7388-7393. doi: 10.1039/c9dt00540d. Epub 2019 Apr 8.
Platinum(iv) carboxylate scaffolds have garnered considerable research interest because they can be engineered to function as prodrugs of clinical platinum(ii) anticancer drugs. These platinum(iv) prodrug complexes are stable and tunable, and activated by reduction to release their cytotoxic platinum(ii) cargo. Here we propose new platinum(iv) prodrug complexes designed to release cisplatin via photoreduction upon UV irradiation. The central strategy is to utilise aryl carboxylate ligands on the axial positions of that platinum(iv) scaffold that confer significant UV absorption and would stabilise carboxyl radical formation, thus favouring homolytic Pt-O bond cleavage. We isolated and identified aryl carboxyl radicals via spin-trapping and showed that the photoreduced platinum species mirror cisplatin reactivity toward DNA bases, thereby validating the efficacy of this approach.
铂(iv)羧酸酯支架引起了相当大的研究兴趣,因为它们可以被设计成临床铂(ii)抗癌药物的前药。这些铂(iv)前药复合物稳定且可调,通过还原激活释放其细胞毒性铂(ii)有效载荷。在这里,我们提出了新的铂(iv)前药复合物,设计用于在 UV 照射下通过光还原释放顺铂。中心策略是利用铂(iv)支架轴向位置上的芳基羧酸酯配体,赋予其显著的紫外吸收,并稳定羧基自由基的形成,从而有利于均裂 Pt-O 键的断裂。我们通过自旋捕获分离并鉴定了芳基羧基自由基,并表明光还原的铂物种与 DNA 碱基的顺铂反应性相似,从而验证了该方法的有效性。