McNeill Samantha M, Preston Dan, Lewis James E M, Robert Anja, Knerr-Rupp Katrin, Graham Danyon O, Wright James R, Giles Gregory I, Crowley James D
Department of Pharmacology and Toxicology, University of Otago, P.O. Box 913, Dunedin, New Zealand.
Dalton Trans. 2015 Jun 28;44(24):11129-36. doi: 10.1039/c5dt01259g. Epub 2015 May 22.
There is emerging interest in the anti-proliferative effects of metallosupramolecular systems due to the different size and shape of these metallo-architectures compared to traditional small molecule drugs. Palladium(II)-containing systems are the most abundant class of metallosupramolecular complexes, yet their biological activity has hardly been examined. Here a small series of Pd2(L)44 quadruply-stranded, dipalladium(II) architectures were screened for their cytotoxic effects against three cancer cell lines and one non-malignant line. The helicates exhibited a range of cytotoxic properties, with the most cytotoxic complex Pd2(hextrz)44 possessing low micromolar IC50 values against all of the cell lines tested, while the other helicates displayed moderate or no cytotoxicity. Against the MDA-MB-231 cell line, which is resistant to platinum-based drugs, Pd2(hextrz)44 was 7-fold more active than cisplatin. Preliminary mechanistic studies indicate that the Pd2(hextrz)44 helicate does not induce cell death in the same way as clinically used metal complexes such as cisplatin. Rather than interacting with DNA, the helicate appears to disrupt the cell membrane. These studies represent the first biological characterisation of quadruply-stranded helicate architectures, and provide insight into the design requirements for the development of biologically active and stable palladium(II)-containing metallosupramolecular architectures.
与传统小分子药物相比,金属超分子体系具有不同的尺寸和形状,因此人们对其抗增殖作用的兴趣日益浓厚。含钯(II)体系是最丰富的一类金属超分子配合物,但其生物活性几乎未被研究。在此,我们筛选了一小系列Pd2(L)44四重链状双钯(II)结构对三种癌细胞系和一种非恶性细胞系的细胞毒性作用。螺旋配合物表现出一系列细胞毒性特性,细胞毒性最强的配合物Pd2(hextrz)44对所有测试细胞系的半数抑制浓度(IC50)值低至微摩尔级别,而其他螺旋配合物则表现出中等细胞毒性或无细胞毒性。对于对铂类药物耐药的MDA-MB-231细胞系,Pd2(hextrz)44的活性比顺铂高7倍。初步机理研究表明,Pd2(hextrz)44螺旋配合物诱导细胞死亡的方式与临床使用的金属配合物如顺铂不同。该螺旋配合物似乎不是与DNA相互作用,而是破坏细胞膜。这些研究首次对四重链状螺旋配合物结构进行了生物学表征,并为开发具有生物活性和稳定性的含钯(II)金属超分子结构的设计要求提供了见解。