School of Chemistry and Biochemistry, University of Geneva, Geneva, Switzerland.
Org Biomol Chem. 2012 Aug 14;10(30):6087-93. doi: 10.1039/c2ob25119a. Epub 2012 Apr 13.
Dynamic amphiphiles provide access to transmembrane ion transport, differential sensing and cellular uptake. In this report, we introduce dynamic amphiphiles with fluorescent tails. Core-substituted naphthalenediimides (cNDIs) and perylenediimides (cPDIs) are tested. Whereas the latter suffer from poor partitioning, dynamic cNDI amphiphiles are found to be purifiable by RP-HPLC, to partition selectively into liquid-disordered (Ld) microdomains of mixed lipid bilayers and to activate DNA as transporters. Importantly, fluorescence properties, partitioning and activity can be modulated by changes in the structure of mixed amphiphiles. These results confirm the potential of dynamic fluorescent amphiphiles to selectively label extra- and intracellular membrane domains and visualize biological function.
动态两亲物可用于实现跨膜离子转运、差异感应和细胞摄取。在本报告中,我们引入了带有荧光尾巴的动态两亲物。我们测试了取代核萘二酰亚胺(cNDIs)和取代苝二酰亚胺(cPDIs)。后者的分配性较差,而动态 cNDI 两亲物则可以通过反相高效液相色谱(RP-HPLC)进行纯化,选择性分配到混合脂质双层的无序(Ld)微区,并作为转运体激活 DNA。重要的是,荧光性质、分配和活性可以通过混合两亲物结构的变化来调节。这些结果证实了动态荧光两亲物选择性标记细胞外和细胞内膜域并可视化生物功能的潜力。