Institut für Chemie u. Biochemie, Freie Universität Berlin, Takustr. 3, 14195 Berlin, Germany.
Biolitec research GmbH, Otto-Schott-Str. 15, 07745 Jena, Germany.
Org Biomol Chem. 2023 Apr 12;21(15):3105-3120. doi: 10.1039/d2ob02174a.
The introduction of heavy atoms into the BODIPY-core structure has proven to be a straightforward strategy for optimizing the design of such dyes towards enhanced generation of singlet oxygen rendering them suitable as photosensitizers for photodynamic therapy (PDT). In this work, BODIPYs are presented by combining the concept of bromination with nucleophilic aromatic substitution (SAr) of a pentafluorophenyl or a 4-fluoro-3-nitrophenyl moiety to introduce functional groups, thus improving the phototoxic effect of the BODIPYs as well as their solubility in the biological environment. The nucleophilic substitution enabled functionalization with various amines and alcohols as well as unprotected thiocarbohydrates. The phototoxic activity of these more than 50 BODIPYs has been assessed in cellular assays against four cancer cell lines in order to more broadly evaluate their PDT potential, thus accounting for the known variability between cell lines with respect to PDT activity. In these investigations, dibrominated polar-substituted BODIPYs, particularly dibrominated glyco-substituted compounds, showed promising potential as photomedicine candidates. Furthermore, the cellular uptake of the glycosylated BODIPYs has been confirmed fluorescence microscopy.
将重原子引入 BODIPY 核心结构已被证明是一种优化此类染料设计的直接策略,可增强单线态氧的产生,使它们适合作为光动力疗法(PDT)的光敏剂。在这项工作中,通过结合溴化和五氟苯基或 4-氟-3-硝基苯基部分的亲核芳香取代(SAr)的概念来引入官能团,从而提高 BODIPY 的光毒性作用以及它们在生物环境中的溶解度。亲核取代可以用各种胺和醇以及未保护的硫代碳水化合物进行功能化。这些超过 50 种 BODIPY 的光毒性活性已在针对四种癌细胞系的细胞测定中进行了评估,以便更广泛地评估它们的 PDT 潜力,从而考虑到 PDT 活性方面细胞系之间的已知变异性。在这些研究中,二溴代极性取代的 BODIPY,特别是二溴代糖基取代的化合物,显示出作为光医学候选物的有希望的潜力。此外,通过荧光显微镜已经证实了糖基化 BODIPY 的细胞摄取。