Conibear Anne C, Hager Sonja, Mayr Josef, Klose Matthias H M, Keppler Bernhard K, Kowol Christian R, Heffeter Petra, Becker Christian F W
Faculty of Chemistry, Institute of Biological Chemistry, University of Vienna , Währinger Straße 38, 1090 Vienna, Austria.
Institute of Cancer Research and Comprehensive Cancer Centre, Medical University of Vienna , Borschkegasse 8a, 1090 Vienna, Austria.
Bioconjug Chem. 2017 Sep 20;28(9):2429-2439. doi: 10.1021/acs.bioconjchem.7b00421. Epub 2017 Aug 10.
Increasing the specificity of cancer therapy, and thereby decreasing damage to normal cells, requires targeting to cancer-cell specific features. The αβ integrin is a receptor involved in cell adhesion and is frequently up-regulated in cancer cells compared to normal cells. We have selected a peptide ligand reported to bind specifically to the β integrin and have synthesized a suite of multispecific molecules to explore the potential for targeting of cancer cells. A combination of solid-phase peptide synthesis and chemoselective ligations was used to synthesize multifunctional molecules composed of integrin-targeting peptides, cytotoxic platinum(IV) prodrugs, and fluorescent or affinity probes joined with flexible linkers. The modular synthesis approach facilitates the construction of peptide-drug conjugates with various valencies and properties in a convergent manner. The binding and specificity of the multifunctional peptide conjugates were investigated using a cell line transfected with the β integrin and fluorescence microscopy. This versatile and highly controlled approach to synthesizing labeled peptide-drug conjugates has the potential to target potent cytotoxic drugs specifically to cancer cells, reducing the doses required for effective treatment.
提高癌症治疗的特异性,从而减少对正常细胞的损伤,需要靶向癌细胞的特定特征。αβ整合素是一种参与细胞黏附的受体,与正常细胞相比,在癌细胞中经常上调。我们选择了一种据报道能特异性结合β整合素的肽配体,并合成了一系列多特异性分子,以探索靶向癌细胞的潜力。采用固相肽合成和化学选择性连接相结合的方法,合成了由整合素靶向肽、细胞毒性铂(IV)前药以及通过柔性连接子连接的荧光或亲和探针组成的多功能分子。模块化合成方法有助于以收敛方式构建具有各种价态和性质的肽-药物缀合物。使用转染了β整合素的细胞系和荧光显微镜研究了多功能肽缀合物的结合和特异性。这种合成标记肽-药物缀合物的通用且高度可控的方法有可能将强效细胞毒性药物特异性地靶向癌细胞,减少有效治疗所需的剂量。