School of Chemistry, The University of Sydney, Sydney, NSW 2006, Australia.
Department of Chemistry, The University of Adelaide, Adelaide, SA 5005, Australia.
J Inorg Biochem. 2017 Dec;177:313-321. doi: 10.1016/j.jinorgbio.2017.07.004. Epub 2017 Jul 5.
The synthesis of a series of bifunctional Gd(III) complexes 1-3 covalently bound to arylphosphonium cations possessing a varying degree of delocalisation at the phosphonium centre is presented. The influence of the degree of delocalisation was investigated with regards to in vitro cytotoxicity, cellular uptake of Gd, tumor-cell selectivity and intracellular localisation of Gd within human glioblastoma (T98G) and human glial (SVG p12) cells. Cellular uptake and selectivity studies for the Gd(III) complexes indicate that a reduced delocalisation at the phosphonium centre can lead to an enhanced Gd uptake into SVG p12 cells which results in a decrease in the overall tumor cell selectivity. Synchrotron X-ray fluorescence (microbeam XRF) imaging has demonstrated for the first time that uniform uptake of Gd(III) complex 2 within a population of T98G cells increased as a function of increasing Gd incubation times. The Gd maps show dispersed spots of high intensity which are consistent with mitochondrial uptake.
本文介绍了一系列双功能 Gd(III) 配合物 1-3 的合成,这些配合物通过共价键连接到芳基膦阳离子上,膦阳离子中心具有不同程度的离域。研究了离域程度对体外细胞毒性、Gd 的细胞摄取、肿瘤细胞选择性以及 Gd 在人神经胶质瘤(T98G)和人神经胶质(SVG p12)细胞内的细胞内定位的影响。Gd(III) 配合物的细胞摄取和选择性研究表明,膦阳离子中心离域程度的降低会导致 SVG p12 细胞中 Gd 的摄取增加,从而降低整体肿瘤细胞的选择性。同步辐射 X 射线荧光(微束 XRF)成像首次证明,T98G 细胞群体中 Gd(III) 配合物 2 的均匀摄取随 Gd 孵育时间的增加而增加。Gd 图谱显示出高强度的分散斑点,与线粒体摄取一致。