Bulgarian Academy of Sciences, Institute of Biophysics and Biomedical Engineering, 1113 Sofia, Bulgaria.
Institute of Biochemistry and Biology, University of Potsdam, Karl-Liebknecht-Street 24-25, 14476 Potsdam, Germany.
Biomolecules. 2020 May 22;10(5):802. doi: 10.3390/biom10050802.
Alkylphospholipids are a novel class of antineoplastic drugs showing remarkable therapeutic potential. Among them, erufosine (EPC3) is a promising drug for the treatment of several types of tumors. While EPC3 is supposed to exert its function by interacting with lipid membranes, the exact molecular mechanisms involved are not known yet. In this work, we applied a combination of several fluorescence microscopy and analytical chemistry approaches (i.e., scanning fluorescence correlation spectroscopy, line-scan fluorescence correlation spectroscopy, generalized polarization imaging, as well as thin layer and gas chromatography) to quantify the effect of EPC3 in biophysical models of the plasma membrane, as well as in cancer cell lines. Our results indicate that EPC3 affects lipid-lipid interactions in cellular membranes by decreasing lipid packing and increasing membrane disorder and fluidity. As a consequence of these alterations in the lateral organization of lipid bilayers, the diffusive dynamics of membrane proteins are also significantly increased. Taken together, these findings suggest that the mechanism of action of EPC3 could be linked to its effects on fundamental biophysical properties of lipid membranes, as well as on lipid metabolism in cancer cells.
烷基磷酸酯是一类新型的抗肿瘤药物,具有显著的治疗潜力。其中,埃鲁索辛(EPC3)是一种有前途的治疗多种类型肿瘤的药物。虽然 EPC3 被认为通过与脂质膜相互作用发挥其功能,但涉及的确切分子机制尚不清楚。在这项工作中,我们应用了几种荧光显微镜和分析化学方法(即扫描荧光相关光谱法、线扫描荧光相关光谱法、广义偏振成像以及薄层和气相色谱法)的组合,来定量研究 EPC3 对质膜生物物理模型以及癌细胞系的影响。我们的结果表明,EPC3 通过降低脂质堆积和增加膜无序性和流动性来影响细胞膜中的脂质-脂质相互作用。由于脂质双层横向组织的这些改变,膜蛋白的扩散动力学也显著增加。总之,这些发现表明,EPC3 的作用机制可能与其对脂质膜基本生物物理特性以及癌细胞中脂质代谢的影响有关。