Tang Juan, Cai Yuan-Bo, Jing Jing, Zhang Jun-Long
Beijing National Laboratory for Molecular Sciences , State Key Laboratory of Rare Earth Materials Chemistry and Applications , College of Chemistry and Molecular Engineering , Peking University , Beijing 100871 , P. R. China . Email:
School of Chemistry , Beijing Institute of Technology , Beijing 100081 , P. R. China.
Chem Sci. 2015 Apr 16;6(4):2389-2397. doi: 10.1039/c4sc03824j. Epub 2015 Jan 21.
Unravelling the unique effects of metal coordination on biological behaviours is of importance to design metal based therapeutic and diagnostic agents. In this work, we chose luminescent Znsalen ( ) as a case study to demonstrate that metal induced aggregation arising from the intermolecular Zn···O interaction influences its cellular uptake and subcellular localization. Comparative studies with the free bases ( and ) show that undergoes cellular uptake through caveolae-mediated endocytosis and internalizes in endosomal/lysosomal compartments, in contrast to the localization of and in the mitochondria. Further studies of photophysical properties, TEM imaging and DLS analysis suggest that tends to form large sized fibrous structures in aqueous media. To investigate the relationship between aggregation and the biological behaviour, we used pyridine to tune the "aggregation-to-deaggregation" transition and found that, in the presence of pyridine, could localize in the mitochondria and internalize into cells through the passive diffusion pathway. Such distinctive biological behaviours resulting from the different Znsalen species clearly point out the importance of metal induced aggregation or metal speciation analysis in designing metal complexes as biological probes.
揭示金属配位对生物行为的独特影响对于设计基于金属的治疗和诊断试剂至关重要。在这项工作中,我们选择发光的Znsalen( )作为案例研究,以证明由分子间Zn···O相互作用引起的金属诱导聚集会影响其细胞摄取和亚细胞定位。与游离碱( 和 )的比较研究表明, 通过小窝介导的内吞作用进行细胞摄取,并在内体/溶酶体区室中内化,这与 和 在线粒体中的定位形成对比。对光物理性质、透射电子显微镜成像和动态光散射分析的进一步研究表明, 在水性介质中倾向于形成大尺寸的纤维状结构。为了研究 的聚集与生物行为之间的关系,我们使用吡啶来调节“聚集-解聚”转变,发现,在吡啶存在下, 可以定位在线粒体中,并通过被动扩散途径内化到细胞中。由不同的Znsalen物种产生的这种独特生物行为清楚地指出了金属诱导聚集或金属形态分析在设计作为生物探针的金属配合物中的重要性。