Bertrand Benoît, O'Connell Maria A, Waller Zoë A E, Bochmann Manfred
School of Chemistry, University of East Anglia, Norwich, NR4 7TJ, UK.
Institut Parisien de Chimie Moléculaire (IPCM), UPMC Univ Paris 06, CNRS, Sorbonne Universités, 4 Place Jussieu, 75005, Paris, France.
Chemistry. 2018 Mar 7;24(14):3613-3622. doi: 10.1002/chem.201705902. Epub 2018 Feb 12.
Cyclometalated (C^N^C)Au complexes bearing functionalized N-heterocyclic carbene (NHC) ligands provide a high-yielding, modular route to bioconjugated and binuclear complexes. This methodology has been applied to the synthesis of bioconjugated complexes presenting biotin and 17α-ethynylestradiol vectors, as well as to the synthesis of bimetallic Au /Au complexes. The in vitro antiproliferative activities of these compounds against various cancer cells lines depend on the linker length, with the longer linker being the most potent. The estradiol conjugate AuC Estra proved to be more toxic against the estrogen receptor positive (ER+) cancer cells than against the ER- cancer cells and non-cancer cells. The bimetallic complex AuC Au was more selective for breast cancer cells with respect to a healthy cell standard than the monometallic complex AuNHC. The metal uptake study on cells expressing or not biotin and estrogen receptors revealed an improved and targeted delivery of gold for both the bioconjugated complexes AuC Biot and AuC Estra compared to the non-vectorised analogue AuNHC. The investigations of the interaction of the bioconjugates and bimetallic complexes with human telomeric G-quadruplex DNA using FRET-melting techniques revealed a reduced ability to stabilize this DNA structure with respect to the non-vectorised analogue AuNHC.
带有功能化氮杂环卡宾(NHC)配体的环金属化(C^N^C)金配合物为生物共轭和双核配合物提供了一条高产、模块化的合成途径。该方法已应用于合成呈现生物素和17α-乙炔基雌二醇载体的生物共轭配合物,以及双金属金/金配合物的合成。这些化合物对各种癌细胞系的体外抗增殖活性取决于连接子长度,连接子越长活性越强。雌二醇共轭物AuC Estra对雌激素受体阳性(ER+)癌细胞的毒性比对ER-癌细胞和非癌细胞更强。与单金属配合物AuNHC相比,双金属配合物AuC Au对乳腺癌细胞相对于健康细胞标准具有更高的选择性。对表达或不表达生物素和雌激素受体的细胞进行的金属摄取研究表明,与未载体化类似物AuNHC相比,生物共轭配合物AuC Biot和AuC Estra的金递送得到了改善且具有靶向性。使用荧光共振能量转移熔解技术对生物共轭物和双金属配合物与人类端粒G-四链体DNA相互作用的研究表明,相对于未载体化类似物AuNHC,它们稳定这种DNA结构的能力有所降低。