Sevastopol State University, Sevastopol 299053, Russia.
Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry Russian Academy of Sciences, Moscow 117997, Russia.
Chem Res Toxicol. 2022 Sep 19;35(9):1482-1492. doi: 10.1021/acs.chemrestox.2c00071. Epub 2022 Aug 18.
There is a range of experimental proofs that biologically relevant compounds change their activity in the presence of C fullerene clusters in aqueous solution, which most frequently act as a nanoplatform for drug delivery. Inspired by this evidence, we made an effort to investigate the interaction of fullerene clusters with the antibiotic topotecan (TPT). This study proceeded in three steps, namely, UV/vis titration to confirm complexation and in vitro assays on proliferating and nonproliferating cells to elucidate the role of C fullerene in the putative change in TPT activity. Surprisingly, although the nonproliferating cell assay is consistent with the titration data and confirms complex formation, it contradicted the results of the proliferating cell assay. The latter showed that the mixture of TPT and fullerene affects the cells in the same way as pure TPT, as if there were no fullerenes in solution at all, whereas the action of TPT was expected to be enhanced. We explained this contradiction by the specific stabilization of the biologically inactive carboxylate form of the antibiotic adsorbed in the alkaline shell of large fullerene clusters, which leads to neutralization of the drug delivery function and almost zero net biological effect of the antibiotic in vitro. The practical outcome of the work is that fullerene clusters can be used for the selective delivery of pH-sensitive drug forms.
有一系列实验证据表明,在水溶液中,生物相关化合物在 C60 富勒烯簇的存在下会改变其活性,而 C60 富勒烯簇最常作为药物递送的纳米平台。受此启发,我们努力研究富勒烯簇与抗生素拓扑替康(TPT)的相互作用。这项研究分三个步骤进行,即紫外/可见滴定以确认络合,以及在增殖和非增殖细胞上进行体外测定,以阐明 C60 富勒烯在 TPT 活性变化中的作用。令人惊讶的是,尽管非增殖细胞测定与滴定数据一致并证实了复合物的形成,但它与增殖细胞测定的结果相矛盾。后者表明,TPT 和富勒烯的混合物对细胞的作用与纯 TPT 相同,就好像溶液中根本没有富勒烯一样,而 TPT 的作用预计会增强。我们通过将抗生素的生物活性差的羧酸盐形式在大富勒烯簇的碱性壳中特异性稳定下来,从而解释了这一矛盾,这导致了药物递送功能的中和,以及抗生素在体外几乎没有净生物学效应。这项工作的实际结果是,富勒烯簇可用于 pH 敏感药物形式的选择性递送。